<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>Hubert Effect</title><description>Bioinformatics — 2014년부터 마크로젠에서 NGS 데이터를 다뤄 왔습니다. 임상 유전체 인증과 분석 파이프라인 운영을 거쳐, 지금은 전사체·단일세포 데이터 분석 팀을 이끌고 있습니다.</description><link>https://hubert-bioinformatics.github.io/</link><language>ko</language><item><title>유전체 시퀀스 딥러닝 모델링 및 해석을 단순화한 DeepGeSeq</title><link>https://hubert-bioinformatics.github.io/radar/2026-08-04-deepgeseq-deep-learning-library-for-genomic-sequence-modeling/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-08-04-deepgeseq-deep-learning-library-for-genomic-sequence-modeling/</guid><description>최소한의 설정만으로 시퀀스 기반 기능 예측과 scATAC-seq, MPRA 분석 파이프라인을 구축한다.</description><pubDate>Tue, 04 Aug 2026 00:00:00 GMT</pubDate><category>paper</category><category>생물정보학</category><category>단일세포</category></item><item><title>비소세포폐암 FFPE의 DNA·RNA 동시 앰플리콘 NGS 융합변이 검출</title><link>https://hubert-bioinformatics.github.io/radar/2026-08-03-amplicon-based-dna-and-rna-unified-ngs-for/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-08-03-amplicon-based-dna-and-rna-unified-ngs-for/</guid><description>저입력량 및 장기 보관 FFPE 검체에서 융합 변이 검출률과 DNA·RNA 통합 패널의 분석 성능을 검증했다.</description><pubDate>Mon, 03 Aug 2026 00:00:00 GMT</pubDate><category>paper</category><category>NGS</category><category>생물정보학</category></item><item><title>단일세포 데이터 기반 인핸서-유전자 상호작용 예측 모델 scE2G</title><link>https://hubert-bioinformatics.github.io/radar/2026-08-03-mapping-enhancer-gene-regulatory-interactions-from-single-cell/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-08-03-mapping-enhancer-gene-regulatory-interactions-from-single-cell/</guid><description>다양한 세포 유형과 조직에서 인핸서와 표적 유전자 간 조절 네트워크를 정밀하게 연결한다.</description><pubDate>Mon, 03 Aug 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category></item><item><title>롱리드 전사체 다차원 분석을 통합한 Nextflow 파이프라인</title><link>https://hubert-bioinformatics.github.io/radar/2026-08-03-nextlongiso-a-comprehensive-nextflow-pipeline-for-multi-dimensional/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-08-03-nextlongiso-a-comprehensive-nextflow-pipeline-for-multi-dimensional/</guid><description>PacBio와 ONT 데이터에서 전사체 동정과 스플라이싱, TE 전사 등 하류 분석을 단일 워크플로우로 통합했다.</description><pubDate>Mon, 03 Aug 2026 00:00:00 GMT</pubDate><category>paper</category><category>생물정보학</category><category>전사체</category></item><item><title>조합 바코딩 Tn5 기반 단일세포 전장 전사체 라이브러리 제작법</title><link>https://hubert-bioinformatics.github.io/radar/2026-08-03-protocol-for-high-resolution-multiplexed-sequencing-of-single/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-08-03-protocol-for-high-resolution-multiplexed-sequencing-of-single/</guid><description>미세 조직 및 단일 세포 수준에서 고처리량 전장 전사체 라이브러리를 구축하는 단계별 상세 가이드다.</description><pubDate>Mon, 03 Aug 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>생물정보학</category></item><item><title>추측 디코딩을 통한 유전체 및 단백질 파운데이션 모델 추론 가속화</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-31-accelerating-inference-in-genomic-and-proteomic-foundation-models/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-31-accelerating-inference-in-genomic-and-proteomic-foundation-models/</guid><description>소형 초안 모델과 대형 검증 모델의 병렬 처리로 출력 품질 저하 없이 추론 속도를 최대 2배 향상했다.</description><pubDate>Fri, 31 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>생물정보학</category><category>오믹스</category></item><item><title>공간 단백체 데이터의 세포 분류 정확도를 높이는 CellTune</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-31-celltune-an-integrative-software-for-accurate-cell-classification/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-31-celltune-an-integrative-software-for-accurate-cell-classification/</guid><description>휴먼인더루프 능동 학습 워크플로우를 활용해 데이터 분석 정밀도를 향상한다.</description><pubDate>Fri, 31 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>오믹스</category><category>생물정보학</category></item><item><title>지속 학습 기반 단일세포 다중오믹스 통합 모델 MIRACLE</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-31-continual-integration-of-single-cell-multimodal-data-with/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-31-continual-integration-of-single-cell-multimodal-data-with/</guid><description>전체 재통합 과정 없이 신규 오믹스 데이터를 누적 반영하여 아틀라스를 효율적으로 확장한다.</description><pubDate>Fri, 31 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>오믹스</category><category>단일세포</category></item><item><title>scAutoTune을 이용한 단일세포 전사체 분석 파라미터 자동 최적화 프로토콜</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-31-protocol-for-automated-optimization-of-feature-selection-and/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-31-protocol-for-automated-optimization-of-feature-selection-and/</guid><description>Grid 기반 탐색과 Silhouette 지표로 Seurat 데이터의 최적 UMAP 및 클러스터를 도출한다.</description><pubDate>Fri, 31 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>전사체</category></item><item><title>벌크 전사체 기반 암세포 이질성 분해 알고리즘 CDState</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-cdstate-resolves-malignant-cell-heterogeneity-from-bulk-tumor/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-cdstate-resolves-malignant-cell-heterogeneity-from-bulk-tumor/</guid><description>비지도 학습 기반으로 벌크 RNA-seq에서 악성 세포 상태와 비율을 추정한다.</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>전사체</category></item><item><title>분비 단백질 신호 활성을 추정하는 연산 프레임워크 SecAct</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-inference-of-secreted-protein-signaling-activities-in-intercellular/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-inference-of-secreted-protein-signaling-activities-in-intercellular/</guid><description>공간, 단일세포, 벌크 전사체에서 1,170개 분비 단백질의 신호 활성을 추정한다.</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>공간전사체</category></item><item><title>공간 미세환경을 반영하는 디컨볼루션 알고리즘 NicheDeSig</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-nichedesig-niche-aware-deconvolution-and-adaptive-signature-analysis/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-nichedesig-niche-aware-deconvolution-and-adaptive-signature-analysis/</guid><description>고정된 레퍼런스 시그니처의 한계를 극복하고 공간 니치에 따른 세포 상태 변화를 함께 추정한다.</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>공간전사체</category><category>단일세포</category></item><item><title>마우스 골막 및 골내막 중간엽 세포 분리를 위한 scRNA-seq 프로토콜</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-protocol-for-the-enrichment-of-endosteal-and-periosteal/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-protocol-for-the-enrichment-of-endosteal-and-periosteal/</guid><description>EDTA 탈칼슘화와 효소 처리, lineage depletion을 조합해 중간엽 세포 수득률과 생존율을 높인 전처리 기법이다.</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>생물정보학</category></item><item><title>나노포어 기반 Nano-Mod-Amp로 규명한 PUS7 슈도유리딘 타겟팅 기전</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-pus7-mrna-pseudouridylation-is-driven-by-rna-sequence/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-pus7-mrna-pseudouridylation-is-driven-by-rna-sequence/</guid><description>타깃 유리의 접근성과 RNA 구조가 PUS7의 mRNA 변식을 결정한다</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>시퀀싱 기술</category><category>전사체</category></item><item><title>단일세포와 공간전사체로 본 인간 신장 발달의 미세환경</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-single-cell-spatial-mapping-of-human-kidney-development/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-single-cell-spatial-mapping-of-human-kidney-development/</guid><description>신장 발생 과정에서 세포 운명 결정에 미치는 미세환경의 공간적 역할을 규명했다.</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>공간전사체</category></item><item><title>공간전사체 범용 표현 학습 모델 SpatialFormer</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-spatialformer-universal-spatial-representation-learning-from-subcellular-molecular/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-spatialformer-universal-spatial-representation-learning-from-subcellular-molecular/</guid><description>서브셀룰러 분포부터 다세포 조직까지 아우르는 멀티모달 공간전사체 학습 프레임워크</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>공간전사체</category><category>단일세포</category></item><item><title>생쥐 모델의 폐 전이 단계별 시공간 다중오믹스 분석</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-30-spatiotemporal-multiomics-charts-cellular-dynamics-of-liver-metastasis/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-30-spatiotemporal-multiomics-charts-cellular-dynamics-of-liver-metastasis/</guid><description>공간전사체와 단일세포 오믹스로 생쥐 모델의 폐 전이 9단계를 분석했다.</description><pubDate>Thu, 30 Jul 2026 00:00:00 GMT</pubDate><category>news</category><category>오믹스</category><category>단일세포</category></item><item><title>RNA-Seq 커버리지 불균일성의 원인과 기존 개선 방법 검증</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-29-a-systematic-evaluation-of-the-sources-of-non/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-29-a-systematic-evaluation-of-the-sources-of-non/</guid><description>전사체 라이브러리 제작 시 발생하는 커버리지 불균일성은 단일 요인으로 설명되지 않으며 기존 개선법의 효과가 미미하다.</description><pubDate>Wed, 29 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>단일세포</category><category>전사체</category></item><item><title>멀티오믹스 단일세포 Hi-C 데이터 전처리 도구 map3C</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-29-map3c-a-computational-tool-for-processing-multiomic-single/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-29-map3c-a-computational-tool-for-processing-multiomic-single/</guid><description>크로마틴 구조와 전사체나 메틸화 데이터를 동시에 처리하는 파이프라인이다.</description><pubDate>Wed, 29 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>생물정보학</category><category>단일세포</category></item><item><title>단일세포 파운데이션 모델 내 염증 기반 노화 신호의 교란 요인 검증</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-28-inflammation-linked-aging-signals-in-frozen-single-cell/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-28-inflammation-linked-aging-signals-in-frozen-single-cell/</guid><description>사전 학습되지 않은 scGPT와 Geneformer가 포착한 노화 신호가 샘플링 편향인지 실제 염증 생물학인지 평가했다.</description><pubDate>Tue, 28 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>전사체</category><category>단일세포</category></item><item><title>Shiny 기반 오믹스 통합 분석 도구 BRIDGE</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-27-bridge-an-interactive-application-for-multi-omics-data/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-27-bridge-an-interactive-application-for-multi-omics-data/</guid><description>단일 및 다중 오믹스 데이터를 로컬 환경에서 대화형으로 분석하고 시각화한다.</description><pubDate>Mon, 27 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>전사체</category><category>오믹스</category></item><item><title>플랫폼·조직 제약을 줄인 전사체 기반 연령 예측 모델 Pasta</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-27-pasta-a-versatile-transcriptomic-clock-maps-the-chemical/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-27-pasta-a-versatile-transcriptomic-clock-maps-the-chemical/</guid><description>벌크·단일세포 RNA-seq 전반에 적용해 노화 및 회춘 조절 화합물과 유전자를 선별한다.</description><pubDate>Mon, 27 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>생물정보학</category><category>단일세포</category></item><item><title>단일세포 멀티오믹스 통합을 위한 적응형 모듈 전략 AGSI</title><link>https://hubert-bioinformatics.github.io/radar/2026-07-23-agsi-adaptive-group-enhanced-strategy-for-iterative-integration/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/radar/2026-07-23-agsi-adaptive-group-enhanced-strategy-for-iterative-integration/</guid><description>유전자 모듈과 반복적 신뢰도 평가를 결합한 AGSI의 멀티오믹스 통합 성능</description><pubDate>Thu, 23 Jul 2026 00:00:00 GMT</pubDate><category>paper</category><category>오믹스</category><category>단일세포</category></item><item><title>7. 진핵생물의 전사조절</title><link>https://hubert-bioinformatics.github.io/notes/7-%EC%A7%84%ED%95%B5%EC%83%9D%EB%AC%BC%EC%9D%98-%EC%A0%84%EC%82%AC%EC%A1%B0%EC%A0%88/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/7-%EC%A7%84%ED%95%B5%EC%83%9D%EB%AC%BC%EC%9D%98-%EC%A0%84%EC%82%AC%EC%A1%B0%EC%A0%88/</guid><description>분자생물학</description><pubDate>Sat, 22 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>8. 단백질 합성</title><link>https://hubert-bioinformatics.github.io/notes/8-%EB%8B%A8%EB%B0%B1%EC%A7%88-%ED%95%A9%EC%84%B1/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/8-%EB%8B%A8%EB%B0%B1%EC%A7%88-%ED%95%A9%EC%84%B1/</guid><description>분자생물학</description><pubDate>Sat, 22 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>6. 원핵생물의 전사조절</title><link>https://hubert-bioinformatics.github.io/notes/6-%EC%9B%90%ED%95%B5%EC%83%9D%EB%AC%BC%EC%9D%98-%EC%A0%84%EC%82%AC%EC%A1%B0%EC%A0%88/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/6-%EC%9B%90%ED%95%B5%EC%83%9D%EB%AC%BC%EC%9D%98-%EC%A0%84%EC%82%AC%EC%A1%B0%EC%A0%88/</guid><description>분자생물학</description><pubDate>Sat, 15 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>4. 돌연변이와 DNA 수선</title><link>https://hubert-bioinformatics.github.io/notes/4-%EB%8F%8C%EC%97%B0%EB%B3%80%EC%9D%B4%EC%99%80-dna-%EC%88%98%EC%84%A0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/4-%EB%8F%8C%EC%97%B0%EB%B3%80%EC%9D%B4%EC%99%80-dna-%EC%88%98%EC%84%A0/</guid><description>분자생물학</description><pubDate>Sun, 09 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>5. 유전자 전사와 RNA 가공</title><link>https://hubert-bioinformatics.github.io/notes/5-%EC%9C%A0%EC%A0%84%EC%9E%90-%EC%A0%84%EC%82%AC%EC%99%80-rna-%EA%B0%80%EA%B3%B5/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/5-%EC%9C%A0%EC%A0%84%EC%9E%90-%EC%A0%84%EC%82%AC%EC%99%80-rna-%EA%B0%80%EA%B3%B5/</guid><description>분자생물학</description><pubDate>Sun, 09 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>1. DNA, RNA, Protein</title><link>https://hubert-bioinformatics.github.io/notes/1-dna-rna-protein/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/1-dna-rna-protein/</guid><description>분자생물학</description><pubDate>Sat, 08 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>2. DNA 구조와 핵산 기술</title><link>https://hubert-bioinformatics.github.io/notes/2-dna-%EA%B5%AC%EC%A1%B0%EC%99%80-%ED%95%B5%EC%82%B0-%EA%B8%B0%EC%88%A0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/2-dna-%EA%B5%AC%EC%A1%B0%EC%99%80-%ED%95%B5%EC%82%B0-%EA%B8%B0%EC%88%A0/</guid><description>분자생물학</description><pubDate>Sat, 08 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>3. DNA 복제</title><link>https://hubert-bioinformatics.github.io/notes/3-dna-%EB%B3%B5%EC%A0%9C/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/3-dna-%EB%B3%B5%EC%A0%9C/</guid><description>분자생물학</description><pubDate>Sat, 08 Jun 2024 00:00:00 GMT</pubDate><category>biology</category><category>molecular</category><category>biology</category></item><item><title>ch12. Model Selection</title><link>https://hubert-bioinformatics.github.io/notes/ch12-model-selection/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch12-model-selection/</guid><description>ML with Python Cookbook</description><pubDate>Sat, 30 Dec 2023 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>model</category></item><item><title>ch13. Linear Regression</title><link>https://hubert-bioinformatics.github.io/notes/ch13-linear-regression/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch13-linear-regression/</guid><description>ML with Python Cookbook</description><pubDate>Sat, 30 Dec 2023 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>linear</category><category>regression</category><category>sklearn</category><category>model</category></item><item><title>ch14. Tree and Random Forest</title><link>https://hubert-bioinformatics.github.io/notes/ch14-tree-and-random-forest/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch14-tree-and-random-forest/</guid><description>ML with Python Cookbook</description><pubDate>Sat, 30 Dec 2023 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>tree</category><category>randomforest</category><category>sklearn</category><category>model</category></item><item><title>ch15. K-Nearest Neighbor</title><link>https://hubert-bioinformatics.github.io/notes/ch15-k-nearest-neighbor/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch15-k-nearest-neighbor/</guid><description>ML with Python Cookbook</description><pubDate>Sat, 30 Dec 2023 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>KNN</category><category>sklearn</category><category>model</category></item><item><title>Special Sort Algorithm - Counting Sort</title><link>https://hubert-bioinformatics.github.io/notes/special-sort-algorithm-counting-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/special-sort-algorithm-counting-sort/</guid><description>Sort Algorithm</description><pubDate>Wed, 27 Sep 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Special Sort Algorithm - Radix Sort</title><link>https://hubert-bioinformatics.github.io/notes/special-sort-algorithm-radix-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/special-sort-algorithm-radix-sort/</guid><description>Sort Algorithm</description><pubDate>Wed, 27 Sep 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Advanced Sort Algorithm - Heap Sort</title><link>https://hubert-bioinformatics.github.io/notes/advanced-sort-algorithm-heap-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/advanced-sort-algorithm-heap-sort/</guid><description>Sort Algorithm</description><pubDate>Sat, 23 Sep 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Epigenetics VI - 후성유전체 데이터 생산과 분석1</title><link>https://hubert-bioinformatics.github.io/notes/epigenetics-vi-%ED%9B%84%EC%84%B1%EC%9C%A0%EC%A0%84%EC%B2%B4-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%83%9D%EC%82%B0%EA%B3%BC-%EB%B6%84%EC%84%9D1/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/epigenetics-vi-%ED%9B%84%EC%84%B1%EC%9C%A0%EC%A0%84%EC%B2%B4-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%83%9D%EC%82%B0%EA%B3%BC-%EB%B6%84%EC%84%9D1/</guid><description>Epigenetics</description><pubDate>Wed, 16 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>epigenetics</category></item><item><title>Epigenetics IV- ncRNA에 의한 전사조절</title><link>https://hubert-bioinformatics.github.io/notes/epigenetics-iv-ncrna%EC%97%90-%EC%9D%98%ED%95%9C-%EC%A0%84%EC%82%AC%EC%A1%B0%EC%A0%88/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/epigenetics-iv-ncrna%EC%97%90-%EC%9D%98%ED%95%9C-%EC%A0%84%EC%82%AC%EC%A1%B0%EC%A0%88/</guid><description>Epigenetics</description><pubDate>Tue, 15 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>epigenetics</category></item><item><title>Epigenetics V- 세포운명 결정의 후성유전학</title><link>https://hubert-bioinformatics.github.io/notes/epigenetics-v-%EC%84%B8%ED%8F%AC%EC%9A%B4%EB%AA%85-%EA%B2%B0%EC%A0%95%EC%9D%98-%ED%9B%84%EC%84%B1%EC%9C%A0%EC%A0%84%ED%95%99/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/epigenetics-v-%EC%84%B8%ED%8F%AC%EC%9A%B4%EB%AA%85-%EA%B2%B0%EC%A0%95%EC%9D%98-%ED%9B%84%EC%84%B1%EC%9C%A0%EC%A0%84%ED%95%99/</guid><description>Epigenetics</description><pubDate>Tue, 15 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>epigenetics</category></item><item><title>Epigenetics III - 히스톤 변형과 DNA 메틸화</title><link>https://hubert-bioinformatics.github.io/notes/epigenetics-iii-%ED%9E%88%EC%8A%A4%ED%86%A4-%EB%B3%80%ED%98%95%EA%B3%BC-dna-%EB%A9%94%ED%8B%B8%ED%99%94/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/epigenetics-iii-%ED%9E%88%EC%8A%A4%ED%86%A4-%EB%B3%80%ED%98%95%EA%B3%BC-dna-%EB%A9%94%ED%8B%B8%ED%99%94/</guid><description>Epigenetics</description><pubDate>Sun, 13 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>epigenetics</category></item><item><title>Epigenetics II - 크로마틴 구조</title><link>https://hubert-bioinformatics.github.io/notes/epigenetics-ii-%ED%81%AC%EB%A1%9C%EB%A7%88%ED%8B%B4-%EA%B5%AC%EC%A1%B0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/epigenetics-ii-%ED%81%AC%EB%A1%9C%EB%A7%88%ED%8B%B4-%EA%B5%AC%EC%A1%B0/</guid><description>Epigenetics</description><pubDate>Sat, 12 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>epigenetics</category></item><item><title>Epigenetics I - 후성유전학의 개요</title><link>https://hubert-bioinformatics.github.io/notes/epigenetics-i-%ED%9B%84%EC%84%B1%EC%9C%A0%EC%A0%84%ED%95%99%EC%9D%98-%EA%B0%9C%EC%9A%94/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/epigenetics-i-%ED%9B%84%EC%84%B1%EC%9C%A0%EC%A0%84%ED%95%99%EC%9D%98-%EA%B0%9C%EC%9A%94/</guid><description>Epigenetics</description><pubDate>Wed, 09 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>epigenetics</category></item><item><title>생물정보학을 위한 R프로그래밍 V - 데이터 시각화</title><link>https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-v-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%8B%9C%EA%B0%81%ED%99%94/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-v-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%8B%9C%EA%B0%81%ED%99%94/</guid><description>생물정보학을 위한 R프로그래밍</description><pubDate>Tue, 08 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>R</category></item><item><title>생물정보학을 위한 R프로그래밍 IV - 데이터 취득과 정제</title><link>https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-iv-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%B7%A8%EB%93%9D%EA%B3%BC-%EC%A0%95%EC%A0%9C/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-iv-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%B7%A8%EB%93%9D%EA%B3%BC-%EC%A0%95%EC%A0%9C/</guid><description>생물정보학을 위한 R프로그래밍</description><pubDate>Sat, 05 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>R</category></item><item><title>생물정보학을 위한 R프로그래밍 III - 데이터형과 연산</title><link>https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-iii-%EB%8D%B0%EC%9D%B4%ED%84%B0%ED%98%95%EA%B3%BC-%EC%97%B0%EC%82%B0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-iii-%EB%8D%B0%EC%9D%B4%ED%84%B0%ED%98%95%EA%B3%BC-%EC%97%B0%EC%82%B0/</guid><description>생물정보학을 위한 R프로그래밍</description><pubDate>Tue, 01 Aug 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>R</category></item><item><title>Interpretation Databases</title><link>https://hubert-bioinformatics.github.io/notes/interpretation-databases/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/interpretation-databases/</guid><pubDate>Mon, 31 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>databases</category></item><item><title>Solid Tumors - Hereditary</title><link>https://hubert-bioinformatics.github.io/notes/solid-tumors-hereditary/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/solid-tumors-hereditary/</guid><pubDate>Mon, 31 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>biology</category></item><item><title>Solid Tumors - Sporadic</title><link>https://hubert-bioinformatics.github.io/notes/solid-tumors-sporadic/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/solid-tumors-sporadic/</guid><pubDate>Mon, 31 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>biology</category></item><item><title>생물정보학을 위한 R프로그래밍 II - 데이터형과 연산</title><link>https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-ii-%EB%8D%B0%EC%9D%B4%ED%84%B0%ED%98%95%EA%B3%BC-%EC%97%B0%EC%82%B0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-ii-%EB%8D%B0%EC%9D%B4%ED%84%B0%ED%98%95%EA%B3%BC-%EC%97%B0%EC%82%B0/</guid><description>생물정보학을 위한 R프로그래밍</description><pubDate>Mon, 31 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>R</category></item><item><title>암 유전체 빅데이터</title><link>https://hubert-bioinformatics.github.io/notes/%EC%95%94-%EC%9C%A0%EC%A0%84%EC%B2%B4-%EB%B9%85%EB%8D%B0%EC%9D%B4%ED%84%B0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%EC%95%94-%EC%9C%A0%EC%A0%84%EC%B2%B4-%EB%B9%85%EB%8D%B0%EC%9D%B4%ED%84%B0/</guid><pubDate>Sun, 30 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>bigdata</category><category>TCGA</category><category>cancer</category></item><item><title>생물정보학을 위한 R프로그래밍 I - R 설치 및 환경설정</title><link>https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-i-r-%EC%84%A4%EC%B9%98-%EB%B0%8F-%ED%99%98%EA%B2%BD%EC%84%A4%EC%A0%95/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%EC%83%9D%EB%AC%BC%EC%A0%95%EB%B3%B4%ED%95%99%EC%9D%84-%EC%9C%84%ED%95%9C-r%ED%94%84%EB%A1%9C%EA%B7%B8%EB%9E%98%EB%B0%8D-i-r-%EC%84%A4%EC%B9%98-%EB%B0%8F-%ED%99%98%EA%B2%BD%EC%84%A4%EC%A0%95/</guid><description>생물정보학을 위한 R프로그래밍</description><pubDate>Thu, 27 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>R</category></item><item><title>Big Data in Precision Oncology - TCGA 데이터베이스의 이해 및 활용</title><link>https://hubert-bioinformatics.github.io/notes/big-data-in-precision-oncology-tcga-%EB%8D%B0%EC%9D%B4%ED%84%B0%EB%B2%A0%EC%9D%B4%EC%8A%A4%EC%9D%98-%EC%9D%B4%ED%95%B4-%EB%B0%8F-%ED%99%9C%EC%9A%A9/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/big-data-in-precision-oncology-tcga-%EB%8D%B0%EC%9D%B4%ED%84%B0%EB%B2%A0%EC%9D%B4%EC%8A%A4%EC%9D%98-%EC%9D%B4%ED%95%B4-%EB%B0%8F-%ED%99%9C%EC%9A%A9/</guid><pubDate>Tue, 25 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>bigdata</category><category>TCGA</category><category>cancer</category></item><item><title>AMP Guideline</title><link>https://hubert-bioinformatics.github.io/notes/amp-guideline/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/amp-guideline/</guid><pubDate>Mon, 24 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>AMP</category><category>cancer</category></item><item><title>Big Data in Precision Oncology - TCGA 및 암유전체 빅데이터 개요</title><link>https://hubert-bioinformatics.github.io/notes/big-data-in-precision-oncology-tcga-%EB%B0%8F-%EC%95%94%EC%9C%A0%EC%A0%84%EC%B2%B4-%EB%B9%85%EB%8D%B0%EC%9D%B4%ED%84%B0-%EA%B0%9C%EC%9A%94/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/big-data-in-precision-oncology-tcga-%EB%B0%8F-%EC%95%94%EC%9C%A0%EC%A0%84%EC%B2%B4-%EB%B9%85%EB%8D%B0%EC%9D%B4%ED%84%B0-%EA%B0%9C%EC%9A%94/</guid><pubDate>Fri, 21 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>bigdata</category><category>TCGA</category><category>cancer</category></item><item><title>PRS(Polygenic Risk Score)</title><link>https://hubert-bioinformatics.github.io/notes/prspolygenic-risk-score/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/prspolygenic-risk-score/</guid><pubDate>Mon, 17 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>PRS</category></item><item><title>Advanced Sort Algorithm - Merge Sort</title><link>https://hubert-bioinformatics.github.io/notes/advanced-sort-algorithm-merge-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/advanced-sort-algorithm-merge-sort/</guid><description>Sort Algorithm</description><pubDate>Sun, 16 Jul 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Advanced Sort Algorithm - Quick Sort</title><link>https://hubert-bioinformatics.github.io/notes/advanced-sort-algorithm-quick-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/advanced-sort-algorithm-quick-sort/</guid><description>Sort Algorithm</description><pubDate>Sun, 16 Jul 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Sort Algorithm - Bubble Sort</title><link>https://hubert-bioinformatics.github.io/notes/sort-algorithm-bubble-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/sort-algorithm-bubble-sort/</guid><description>Sort Algorithm</description><pubDate>Sat, 15 Jul 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Sort Algorithm - Insertion Sort</title><link>https://hubert-bioinformatics.github.io/notes/sort-algorithm-insertion-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/sort-algorithm-insertion-sort/</guid><description>Sort Algorithm</description><pubDate>Sat, 15 Jul 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Sort Algorithm - Selection Sort</title><link>https://hubert-bioinformatics.github.io/notes/sort-algorithm-selection-sort/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/sort-algorithm-selection-sort/</guid><description>Sort Algorithm</description><pubDate>Sat, 15 Jul 2023 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>sort</category><category>python</category></item><item><title>Long Read Sequencing VI - SV Calling</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-vi-sv-calling/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-vi-sv-calling/</guid><description>Long Read Sequencing</description><pubDate>Wed, 12 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>Long Read Sequencing VII - Visualization</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-vii-visualization/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-vii-visualization/</guid><description>Long Read Sequencing</description><pubDate>Wed, 12 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>Long Read Sequencing V - Assembly Quality 확인</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-v-assembly-quality-%ED%99%95%EC%9D%B8/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-v-assembly-quality-%ED%99%95%EC%9D%B8/</guid><description>Long Read Sequencing</description><pubDate>Tue, 11 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>Long Read Sequencing IV - Repeat/Gene Annotation</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-iv-repeatgene-annotation/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-iv-repeatgene-annotation/</guid><description>Long Read Sequencing</description><pubDate>Mon, 10 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>Long Read Sequencing II - 유전체 지도 작성 개괄</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-ii-%EC%9C%A0%EC%A0%84%EC%B2%B4-%EC%A7%80%EB%8F%84-%EC%9E%91%EC%84%B1-%EA%B0%9C%EA%B4%84/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-ii-%EC%9C%A0%EC%A0%84%EC%B2%B4-%EC%A7%80%EB%8F%84-%EC%9E%91%EC%84%B1-%EA%B0%9C%EA%B4%84/</guid><description>Long Read Sequencing</description><pubDate>Fri, 07 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>Long Read Sequencing III - 유전체 크기 추정하기</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-iii-%EC%9C%A0%EC%A0%84%EC%B2%B4-%ED%81%AC%EA%B8%B0-%EC%B6%94%EC%A0%95%ED%95%98%EA%B8%B0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-iii-%EC%9C%A0%EC%A0%84%EC%B2%B4-%ED%81%AC%EA%B8%B0-%EC%B6%94%EC%A0%95%ED%95%98%EA%B8%B0/</guid><description>Long Read Sequencing</description><pubDate>Fri, 07 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>Long Read Sequencing I - Introduction</title><link>https://hubert-bioinformatics.github.io/notes/long-read-sequencing-i-introduction/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/long-read-sequencing-i-introduction/</guid><description>Long Read Sequencing</description><pubDate>Thu, 06 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>pacbio</category><category>longread</category></item><item><title>(Error) CommandNotFoundError - Your shell has not been properly configured to use &apos;conda activate&apos;</title><link>https://hubert-bioinformatics.github.io/notes/error-commandnotfounderror-your-shell-has-not-been-properly-configured-to-use-conda-activate/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/error-commandnotfounderror-your-shell-has-not-been-properly-configured-to-use-conda-activate/</guid><pubDate>Wed, 05 Jul 2023 00:00:00 GMT</pubDate><category>programming</category><category>python</category><category>anaconda</category><category>conda</category><category>activate</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 10. Non-Parametric Multiple Comparison with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-10-non-parametric-multiple-comparison-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-10-non-parametric-multiple-comparison-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Wed, 05 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 11. Summary</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-11-summary/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-11-summary/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Wed, 05 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 9. Kruskal-Wallis Rank Sum Test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-9-kruskal-wallis-rank-sum-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-9-kruskal-wallis-rank-sum-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Wed, 05 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 7. Analysis of Variance with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-7-analysis-of-variance-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-7-analysis-of-variance-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Tue, 04 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 8. Parametric Multiple Comparison with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-8-parametric-multiple-comparison-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-8-parametric-multiple-comparison-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Tue, 04 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 5. Paired t-test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-5-paired-t-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-5-paired-t-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Mon, 03 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 6. Wilcoxon&apos;s matched pairs signed rank test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-6-wilcoxons-matched-pairs-signed-rank-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-6-wilcoxons-matched-pairs-signed-rank-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Mon, 03 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 4. Wilcoxons Rank Sum Test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-4-wilcoxons-rank-sum-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-4-wilcoxons-rank-sum-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Sat, 01 Jul 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 3. Two Sample t-Test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-3-two-sample-t-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-3-two-sample-t-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Thu, 29 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 2. Wilcoxon&apos;s Signed Rank Test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-2-wilcoxons-signed-rank-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-2-wilcoxons-signed-rank-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Wed, 28 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>파이썬을 활용한 데이터 분석 (중급) - 1. One Sample t-Test with python</title><link>https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-1-one-sample-t-test-with-python/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/%ED%8C%8C%EC%9D%B4%EC%8D%AC%EC%9D%84-%ED%99%9C%EC%9A%A9%ED%95%9C-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EB%B6%84%EC%84%9D-%EC%A4%91%EA%B8%89-1-one-sample-t-test-with-python/</guid><description>파이썬을 활용한 데이터 분석 (중급)</description><pubDate>Tue, 27 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>python</category><category>statistics</category></item><item><title>ML and DL for Cancer Genomics VI - 딥러닝 구동 환경 구축 1</title><link>https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-vi-%EB%94%A5%EB%9F%AC%EB%8B%9D-%EA%B5%AC%EB%8F%99-%ED%99%98%EA%B2%BD-%EA%B5%AC%EC%B6%95-1/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-vi-%EB%94%A5%EB%9F%AC%EB%8B%9D-%EA%B5%AC%EB%8F%99-%ED%99%98%EA%B2%BD-%EA%B5%AC%EC%B6%95-1/</guid><description>ML and DL for Cancer Genomics</description><pubDate>Thu, 22 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>cancer</category><category>ML</category><category>DL</category></item><item><title>Genetic Testing Agency Training 6 - 검사대상자의 권리</title><link>https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-6-%EA%B2%80%EC%82%AC%EB%8C%80%EC%83%81%EC%9E%90%EC%9D%98-%EA%B6%8C%EB%A6%AC/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-6-%EA%B2%80%EC%82%AC%EB%8C%80%EC%83%81%EC%9E%90%EC%9D%98-%EA%B6%8C%EB%A6%AC/</guid><description>유전자검사기관 교육</description><pubDate>Tue, 20 Jun 2023 00:00:00 GMT</pubDate><category>biology</category><category>bioinformatics</category><category>genetics</category></item><item><title>ML and DL for Cancer Genomics II - ML Basic Concpts and Evaluation Methods</title><link>https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-ii-ml-basic-concpts-and-evaluation-methods/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-ii-ml-basic-concpts-and-evaluation-methods/</guid><description>ML and DL for Cancer Genomics</description><pubDate>Tue, 20 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>cancer</category><category>ML</category><category>DL</category></item><item><title>ML and DL for Cancer Genomics III - DL Algorithm I</title><link>https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-iii-dl-algorithm-i/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-iii-dl-algorithm-i/</guid><description>ML and DL for Cancer Genomics</description><pubDate>Tue, 20 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>cancer</category><category>ML</category><category>DL</category></item><item><title>ML and DL for Cancer Genomics IV - DL Algorithm II</title><link>https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-iv-dl-algorithm-ii/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-iv-dl-algorithm-ii/</guid><description>ML and DL for Cancer Genomics</description><pubDate>Tue, 20 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>cancer</category><category>ML</category><category>DL</category></item><item><title>Genetic Testing Agency Training 4 - 유전자검사기관의 의무 및 책임</title><link>https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-4-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%EA%B8%B0%EA%B4%80%EC%9D%98-%EC%9D%98%EB%AC%B4-%EB%B0%8F-%EC%B1%85%EC%9E%84/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-4-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%EA%B8%B0%EA%B4%80%EC%9D%98-%EC%9D%98%EB%AC%B4-%EB%B0%8F-%EC%B1%85%EC%9E%84/</guid><description>유전자검사기관 교육</description><pubDate>Mon, 19 Jun 2023 00:00:00 GMT</pubDate><category>biology</category><category>bioinformatics</category><category>genetics</category></item><item><title>Genetic Testing Agency Training 5 - 유전자검사기관의 숙련도 평가</title><link>https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-5-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%EA%B8%B0%EA%B4%80%EC%9D%98-%EC%88%99%EB%A0%A8%EB%8F%84-%ED%8F%89%EA%B0%80/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-5-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%EA%B8%B0%EA%B4%80%EC%9D%98-%EC%88%99%EB%A0%A8%EB%8F%84-%ED%8F%89%EA%B0%80/</guid><description>유전자검사기관 교육</description><pubDate>Mon, 19 Jun 2023 00:00:00 GMT</pubDate><category>biology</category><category>bioinformatics</category><category>genetics</category></item><item><title>Genetic Testing Agency Training 3 - 유전자검사항목의 신고</title><link>https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-3-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%ED%95%AD%EB%AA%A9%EC%9D%98-%EC%8B%A0%EA%B3%A0/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-3-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%ED%95%AD%EB%AA%A9%EC%9D%98-%EC%8B%A0%EA%B3%A0/</guid><description>유전자검사기관 교육</description><pubDate>Wed, 14 Jun 2023 00:00:00 GMT</pubDate><category>biology</category><category>bioinformatics</category><category>genetics</category></item><item><title>Genetic Testing Agency Training 1 - 유전자검사의 이해</title><link>https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-1-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%EC%9D%98-%EC%9D%B4%ED%95%B4/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-1-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC%EC%9D%98-%EC%9D%B4%ED%95%B4/</guid><description>유전자검사기관 교육</description><pubDate>Fri, 09 Jun 2023 00:00:00 GMT</pubDate><category>biology</category><category>bioinformatics</category><category>genetics</category></item><item><title>Genetic Testing Agency Training 2 - 유전자검사 제도의 이해</title><link>https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-2-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC-%EC%A0%9C%EB%8F%84%EC%9D%98-%EC%9D%B4%ED%95%B4/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/genetic-testing-agency-training-2-%EC%9C%A0%EC%A0%84%EC%9E%90%EA%B2%80%EC%82%AC-%EC%A0%9C%EB%8F%84%EC%9D%98-%EC%9D%B4%ED%95%B4/</guid><description>유전자검사기관 교육</description><pubDate>Fri, 09 Jun 2023 00:00:00 GMT</pubDate><category>biology</category><category>bioinformatics</category><category>genetics</category></item><item><title>ML and DL for Cancer Genomics I - Bioinformatics Trend</title><link>https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-i-bioinformatics-trend/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ml-and-dl-for-cancer-genomics-i-bioinformatics-trend/</guid><description>ML and DL for Cancer Genomics</description><pubDate>Fri, 09 Jun 2023 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>cancer</category><category>ML</category><category>DL</category></item><item><title>(Cheat Sheet) - Matplotlib</title><link>https://hubert-bioinformatics.github.io/notes/cheat-sheet-matplotlib/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/cheat-sheet-matplotlib/</guid><pubDate>Sat, 26 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>python</category><category>matplotlib</category><category>cheatsheet</category></item><item><title>(Cheat Sheet) - Pandas</title><link>https://hubert-bioinformatics.github.io/notes/cheat-sheet-pandas/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/cheat-sheet-pandas/</guid><pubDate>Sat, 26 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>python</category><category>pandas</category><category>cheatsheet</category></item><item><title>(Cheat Sheet) - Seaborn</title><link>https://hubert-bioinformatics.github.io/notes/cheat-sheet-seaborn/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/cheat-sheet-seaborn/</guid><pubDate>Sat, 26 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>python</category><category>seaborn</category><category>cheatsheet</category></item><item><title>Transcriptome II - Data Preprocessing</title><link>https://hubert-bioinformatics.github.io/notes/transcriptome-ii-data-preprocessing/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/transcriptome-ii-data-preprocessing/</guid><description>Transcriptome</description><pubDate>Tue, 22 Nov 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>transcriptome</category></item><item><title>Transcriptome III - Differential Expression &amp; Visual Exploration</title><link>https://hubert-bioinformatics.github.io/notes/transcriptome-iii-differential-expression--visual-exploration/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/transcriptome-iii-differential-expression--visual-exploration/</guid><description>Transcriptome</description><pubDate>Tue, 22 Nov 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>transcriptome</category></item><item><title>SQL 기초</title><link>https://hubert-bioinformatics.github.io/notes/sql-%EA%B8%B0%EC%B4%88/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/sql-%EA%B8%B0%EC%B4%88/</guid><pubDate>Sun, 13 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>database</category><category>basicSQL</category></item><item><title>Sub-query and JOIN, UNION</title><link>https://hubert-bioinformatics.github.io/notes/sub-query-and-join-union/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/sub-query-and-join-union/</guid><pubDate>Sun, 13 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>database</category><category>SQL</category><category>query</category></item><item><title>Transcriptome I - Introduction to Transcriptome</title><link>https://hubert-bioinformatics.github.io/notes/transcriptome-i-introduction-to-transcriptome/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/transcriptome-i-introduction-to-transcriptome/</guid><description>Transcriptome</description><pubDate>Thu, 10 Nov 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>transcriptome</category></item><item><title>Definition of Data</title><link>https://hubert-bioinformatics.github.io/notes/definition-of-data/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/definition-of-data/</guid><pubDate>Sun, 06 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>database</category><category>relationalmodel</category><category>SQL</category></item><item><title>Relational Model</title><link>https://hubert-bioinformatics.github.io/notes/relational-model/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/relational-model/</guid><pubDate>Sun, 06 Nov 2022 00:00:00 GMT</pubDate><category>programming</category><category>programming</category><category>database</category><category>relationalmodel</category></item><item><title>Variants Analysis VI - Cancer Immunotherapy</title><link>https://hubert-bioinformatics.github.io/notes/variants-analysis-vi-cancer-immunotherapy/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/variants-analysis-vi-cancer-immunotherapy/</guid><description>Variants Analysis</description><pubDate>Thu, 03 Nov 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>variant</category><category>cancer</category><category>immune</category><category>immunotherapy</category></item><item><title>Variants Analysis IV</title><link>https://hubert-bioinformatics.github.io/notes/variants-analysis-iv/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/variants-analysis-iv/</guid><pubDate>Tue, 25 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>variant</category><category>calling</category></item><item><title>Variants Analysis V - Cancer Analysis</title><link>https://hubert-bioinformatics.github.io/notes/variants-analysis-v-cancer-analysis/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/variants-analysis-v-cancer-analysis/</guid><description>Variants Analysis</description><pubDate>Tue, 25 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>variant</category><category>cancer</category><category>calling</category></item><item><title>Variants Analysis III</title><link>https://hubert-bioinformatics.github.io/notes/variants-analysis-iii/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/variants-analysis-iii/</guid><pubDate>Thu, 20 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>next generation sequencing</category><category>variant</category><category>calling</category><category>SV</category></item><item><title>Clustering of Single Cell &amp; Cell Type Assignment I</title><link>https://hubert-bioinformatics.github.io/notes/clustering-of-single-cell--cell-type-assignment-i/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/clustering-of-single-cell--cell-type-assignment-i/</guid><pubDate>Sun, 16 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>single cell analysis</category></item><item><title>Preprocessing of Single Cell Analysis II</title><link>https://hubert-bioinformatics.github.io/notes/preprocessing-of-single-cell-analysis-ii/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/preprocessing-of-single-cell-analysis-ii/</guid><pubDate>Sun, 16 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>single cell analysis</category></item><item><title>Preprocessing of Single Cell Analysis I</title><link>https://hubert-bioinformatics.github.io/notes/preprocessing-of-single-cell-analysis-i/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/preprocessing-of-single-cell-analysis-i/</guid><pubDate>Sat, 15 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>single cell analysis</category></item><item><title>Experimental Design for Single Cell Analysis</title><link>https://hubert-bioinformatics.github.io/notes/experimental-design-for-single-cell-analysis/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/experimental-design-for-single-cell-analysis/</guid><pubDate>Mon, 03 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>single cell analysis</category></item><item><title>Introduce to Single Cell Analysis</title><link>https://hubert-bioinformatics.github.io/notes/introduce-to-single-cell-analysis/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/introduce-to-single-cell-analysis/</guid><pubDate>Mon, 03 Oct 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>single cell analysis</category></item><item><title>Variants Analysis II</title><link>https://hubert-bioinformatics.github.io/notes/variants-analysis-ii/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/variants-analysis-ii/</guid><pubDate>Tue, 27 Sep 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>next generation sequencing</category><category>variant</category><category>calling</category></item><item><title>Variants Analysis I</title><link>https://hubert-bioinformatics.github.io/notes/variants-analysis-i/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/variants-analysis-i/</guid><pubDate>Thu, 11 Aug 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>next generation sequencing</category><category>variant</category><category>calling</category></item><item><title>WES Clinical Interpretaion I</title><link>https://hubert-bioinformatics.github.io/notes/wes-clinical-interpretaion-i/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-clinical-interpretaion-i/</guid><pubDate>Tue, 26 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category><category>interpretation</category></item><item><title>WES Clinical Interpretaion II</title><link>https://hubert-bioinformatics.github.io/notes/wes-clinical-interpretaion-ii/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-clinical-interpretaion-ii/</guid><pubDate>Tue, 26 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category><category>interpretation</category></item><item><title>WES Dominant Variants</title><link>https://hubert-bioinformatics.github.io/notes/wes-dominant-variants/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-dominant-variants/</guid><pubDate>Mon, 25 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category><category>dominant</category></item><item><title>WES Recessive Variants</title><link>https://hubert-bioinformatics.github.io/notes/wes-recessive-variants/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-recessive-variants/</guid><pubDate>Mon, 25 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category><category>recessive</category></item><item><title>WES Structural Variants</title><link>https://hubert-bioinformatics.github.io/notes/wes-structural-variants/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-structural-variants/</guid><pubDate>Mon, 25 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category><category>structural variant</category><category>CNV</category></item><item><title>WES 데이터 처리와 해석법</title><link>https://hubert-bioinformatics.github.io/notes/wes-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%B2%98%EB%A6%AC%EC%99%80-%ED%95%B4%EC%84%9D%EB%B2%95/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-%EB%8D%B0%EC%9D%B4%ED%84%B0-%EC%B2%98%EB%A6%AC%EC%99%80-%ED%95%B4%EC%84%9D%EB%B2%95/</guid><pubDate>Mon, 25 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category></item><item><title>WES 연구 디자인법</title><link>https://hubert-bioinformatics.github.io/notes/wes-%EC%97%B0%EA%B5%AC-%EB%94%94%EC%9E%90%EC%9D%B8%EB%B2%95/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-%EC%97%B0%EA%B5%AC-%EB%94%94%EC%9E%90%EC%9D%B8%EB%B2%95/</guid><pubDate>Mon, 25 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category></item><item><title>WES 개념과 유전학적 의의</title><link>https://hubert-bioinformatics.github.io/notes/wes-%EA%B0%9C%EB%85%90%EA%B3%BC-%EC%9C%A0%EC%A0%84%ED%95%99%EC%A0%81-%EC%9D%98%EC%9D%98/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/wes-%EA%B0%9C%EB%85%90%EA%B3%BC-%EC%9C%A0%EC%A0%84%ED%95%99%EC%A0%81-%EC%9D%98%EC%9D%98/</guid><pubDate>Sun, 24 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>NGS</category><category>WES</category></item><item><title>ch2. Introduce Linear Algebra</title><link>https://hubert-bioinformatics.github.io/notes/ch2-introduce-linear-algebra/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch2-introduce-linear-algebra/</guid><description>Guide to Linear Algebra</description><pubDate>Sat, 23 Jul 2022 00:00:00 GMT</pubDate><category>statistics</category><category>linear algebra</category><category>study</category><category>vector</category><category>linearity</category></item><item><title>ch3. Linear Algebra Calculations</title><link>https://hubert-bioinformatics.github.io/notes/ch3-linear-algebra-calculations/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch3-linear-algebra-calculations/</guid><description>Guide to Linear Algebra</description><pubDate>Sat, 23 Jul 2022 00:00:00 GMT</pubDate><category>statistics</category><category>linear algebra</category><category>study</category><category>vector</category><category>Gauss-Jordan elimination</category><category>determinant</category><category>matrix inverse</category></item><item><title>ch9. Expectation, Indicator Random Variables, Linearity</title><link>https://hubert-bioinformatics.github.io/notes/ch9-expectation-indicator-random-variables-linearity/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch9-expectation-indicator-random-variables-linearity/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Sat, 23 Jul 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>CDF</category><category>expectation</category><category>linearity</category></item><item><title>ch8. Random Variables and Their Distributions</title><link>https://hubert-bioinformatics.github.io/notes/ch8-random-variables-and-their-distributions/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch8-random-variables-and-their-distributions/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Sun, 17 Jul 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>PMF</category><category>CDF</category></item><item><title>Sequencing Technologies</title><link>https://hubert-bioinformatics.github.io/notes/sequencing-technologies/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/sequencing-technologies/</guid><pubDate>Sun, 10 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>sanger sequencing</category><category>chip sequencing</category><category>next generation sequencing</category></item><item><title>about DNA</title><link>https://hubert-bioinformatics.github.io/notes/about-dna/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/about-dna/</guid><pubDate>Sat, 09 Jul 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>DNA</category><category>RNA</category><category>nucleoside</category><category>nucleotide</category><category>pentose sugar</category><category>nitrogenous base</category><category>phosphate</category><category>replication</category><category>weight</category></item><item><title>ch7. Gambler&apos;s Ruin and Random Variables</title><link>https://hubert-bioinformatics.github.io/notes/ch7-gamblers-ruin-and-random-variables/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch7-gamblers-ruin-and-random-variables/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Tue, 28 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>gambler&apos;s ruin</category><category>differece equation</category><category>random variable</category><category>bernoulli</category><category>binomial</category></item><item><title>ch6. Monty Hall, Simpson&apos;s Paradox</title><link>https://hubert-bioinformatics.github.io/notes/ch6-monty-hall-simpsons-paradox/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch6-monty-hall-simpsons-paradox/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Sun, 26 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>monty hall</category><category>law of total probability</category><category>simpson&apos;s paradox</category></item><item><title>ch5. Conditioning Continued, Law of Total Probability</title><link>https://hubert-bioinformatics.github.io/notes/ch5-conditioning-continued-law-of-total-probability/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch5-conditioning-continued-law-of-total-probability/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Thu, 23 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>law of total probability</category><category>conditional probability</category><category>prior</category><category>posterior</category><category>conditional independence</category></item><item><title>ch4. Conditional Probability</title><link>https://hubert-bioinformatics.github.io/notes/ch4-conditional-probability/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch4-conditional-probability/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Sun, 19 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>probability</category><category>independence</category><category>newton-pepys problem</category><category>conditional probability</category><category>bayes&apos; theorem</category></item><item><title>Phred Score (Base Call Quality Score)</title><link>https://hubert-bioinformatics.github.io/notes/phred-score-base-call-quality-score/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/phred-score-base-call-quality-score/</guid><pubDate>Sat, 18 Jun 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>fastq</category><category>phred score</category><category>NGS</category></item><item><title>Fastq</title><link>https://hubert-bioinformatics.github.io/notes/fastq/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/fastq/</guid><pubDate>Thu, 16 Jun 2022 00:00:00 GMT</pubDate><category>bioinformatics</category><category>BI</category><category>bioinformatics</category><category>fastq</category><category>NGS</category></item><item><title>ch3. Birthday Problem, Properties of Probability</title><link>https://hubert-bioinformatics.github.io/notes/ch3-birthday-problem-properties-of-probability/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch3-birthday-problem-properties-of-probability/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Sun, 12 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>probability</category><category>birthday problem</category><category>Inclusion-Exclusion Principle</category></item><item><title>ch2. Story Proofs, Axioms of Probability</title><link>https://hubert-bioinformatics.github.io/notes/ch2-story-proofs-axioms-of-probability/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch2-story-proofs-axioms-of-probability/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Fri, 10 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>probability</category><category>story proofs</category></item><item><title>ch1. Probability and Counting</title><link>https://hubert-bioinformatics.github.io/notes/ch1-probability-and-counting/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch1-probability-and-counting/</guid><description>Statistics (Harvard Stat110)</description><pubDate>Mon, 06 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>statistics</category><category>harbard</category><category>sample space</category><category>event</category><category>probability</category><category>counting</category><category>binomial coefficient</category></item><item><title>ch1. Basic Mathmatics</title><link>https://hubert-bioinformatics.github.io/notes/ch1-basic-mathmatics/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch1-basic-mathmatics/</guid><description>Guide to Linear Algebra</description><pubDate>Sat, 04 Jun 2022 00:00:00 GMT</pubDate><category>statistics</category><category>linear algebra</category><category>study</category><category>math</category></item><item><title>ch11. Evaluation of Model</title><link>https://hubert-bioinformatics.github.io/notes/ch11-evaluation-of-model/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch11-evaluation-of-model/</guid><description>ML with Python Cookbook</description><pubDate>Fri, 03 Jun 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>dataframe</category></item><item><title>ch10. Dimension Reduction Using Feature Selection</title><link>https://hubert-bioinformatics.github.io/notes/ch10-dimension-reduction-using-feature-selection/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch10-dimension-reduction-using-feature-selection/</guid><description>ML with Python Cookbook</description><pubDate>Thu, 02 Jun 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>dataframe</category></item><item><title>ch5. Category Data</title><link>https://hubert-bioinformatics.github.io/notes/ch5-category-data/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch5-category-data/</guid><description>ML with Python Cookbook</description><pubDate>Wed, 01 Jun 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>dataframe</category></item><item><title>ch9. Dimension Reduction Using Feature Extraction</title><link>https://hubert-bioinformatics.github.io/notes/ch9-dimension-reduction-using-feature-extraction/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch9-dimension-reduction-using-feature-extraction/</guid><description>ML with Python Cookbook</description><pubDate>Wed, 01 Jun 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>dataframe</category></item><item><title>ch4. Numeric Data</title><link>https://hubert-bioinformatics.github.io/notes/ch4-numeric-data/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch4-numeric-data/</guid><description>ML with Python Cookbook</description><pubDate>Sat, 28 May 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>dataframe</category><category>outlier</category><category>standardization</category><category>normalization</category></item><item><title>Search Algorithm - BFS (Breadth-First Search)</title><link>https://hubert-bioinformatics.github.io/notes/search-algorithm-bfs-breadth-first-search/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/search-algorithm-bfs-breadth-first-search/</guid><description>Search Algorithm</description><pubDate>Fri, 27 May 2022 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>search</category><category>python</category></item><item><title>ch3. Data Wrangling</title><link>https://hubert-bioinformatics.github.io/notes/ch3-data-wrangling/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch3-data-wrangling/</guid><description>ML with Python Cookbook</description><pubDate>Thu, 26 May 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category><category>dataframe</category></item><item><title>ch1. Vector Matrix Array</title><link>https://hubert-bioinformatics.github.io/notes/ch1-vector-matrix-array/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch1-vector-matrix-array/</guid><description>ML with Python Cookbook</description><pubDate>Wed, 25 May 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>vector</category><category>matrix</category><category>array</category></item><item><title>ch2. Data Load</title><link>https://hubert-bioinformatics.github.io/notes/ch2-data-load/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/ch2-data-load/</guid><description>ML with Python Cookbook</description><pubDate>Wed, 25 May 2022 00:00:00 GMT</pubDate><category>ml-data</category><category>ml</category><category>python</category><category>study</category><category>sklearn</category></item><item><title>Dataframe in Pandas</title><link>https://hubert-bioinformatics.github.io/notes/dataframe-in-pandas/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/dataframe-in-pandas/</guid><pubDate>Tue, 24 May 2022 00:00:00 GMT</pubDate><category>programming</category><category>python</category><category>pandas</category><category>dataframe</category></item><item><title>Stack vs Queue</title><link>https://hubert-bioinformatics.github.io/notes/stack-vs-queue/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/stack-vs-queue/</guid><pubDate>Tue, 24 May 2022 00:00:00 GMT</pubDate><category>programming</category><category>database</category><category>LIFO</category><category>FIFO</category></item><item><title>Search Algorithm - DFS (Depth-First Search)</title><link>https://hubert-bioinformatics.github.io/notes/search-algorithm-dfs-depth-first-search/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/search-algorithm-dfs-depth-first-search/</guid><description>Search Algorithm</description><pubDate>Sun, 22 May 2022 00:00:00 GMT</pubDate><category>programming</category><category>algorithm</category><category>search</category><category>python</category></item><item><title>Style Guide for Shell - Google</title><link>https://hubert-bioinformatics.github.io/notes/style-guide-for-shell-google/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/style-guide-for-shell-google/</guid><pubDate>Fri, 15 Apr 2022 00:00:00 GMT</pubDate><category>programming</category><category>linux</category><category>shell</category></item><item><title>Style Guide for Python Code - PEP8</title><link>https://hubert-bioinformatics.github.io/notes/style-guide-for-python-code-pep8/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/style-guide-for-python-code-pep8/</guid><pubDate>Sun, 27 Mar 2022 00:00:00 GMT</pubDate><category>programming</category><category>python</category></item><item><title>VS code</title><link>https://hubert-bioinformatics.github.io/notes/vs-code/</link><guid isPermaLink="true">https://hubert-bioinformatics.github.io/notes/vs-code/</guid><pubDate>Sun, 27 Mar 2022 00:00:00 GMT</pubDate><category>programming</category><category>tool</category><category>python</category></item></channel></rss>