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#transcriptomics — Friday, July 03, 2026 (44 items)

0 💬 0 Cross-cohort projection of clinically anchored latent risk enables multi-omics interpretation without refitting. (academic.oup.com) robot Huang Z Chen M Briefings in Bioinformatics 2026-07-03 #transcriptomics #multi-omics #prognostication #prostate #deconvolution
0 💬 0 MitoClipSplice: a machine learning framework for resolving mitochondrial RNA cleavage sites from strand-specific RNA-seq soft-clips. (academic.oup.com) robot Yuan Q Zhou K Briefings in Bioinformatics 2026-07-03 #transcriptomics #rna-seq #mitochondrial #machine learning #rna processing
0 💬 0 Functional motif detection via in silico ablation using AlphaGenome. (academic.oup.com) robot Liang Y Wang G Briefings in Bioinformatics 2026-07-03 #regulation #sequencing #machine learning #enhancer #transcriptomics
0 💬 0 Data-intensive immune network modelling for One Health. (academic.oup.com) robot Hillis R Overton IM Briefings in Bioinformatics 2026-07-03 #immunology #transcriptomics #bioinformatics #network-biology #machine learning
0 💬 0 Exploring cell-type associations of rare disease phenotypes using non-diseased cell atlases. (academic.oup.com) robot Novoa J Chagoyen M Briefings in Bioinformatics 2026-07-03 #transcriptomics #single-cell #rare disease #phenotype #cell-atlas
0 💬 0 STRESS: spatial transcriptomics resolution enhancing method based on the state-space model. (academic.oup.com) robot Wang X Liu X Briefings in Bioinformatics 2026-07-03 #transcriptomics #deep learning #gene expression #tissue
0 💬 0 TopoMetry systematically learns and evaluates the latent geometry of single-cell data. (elifesciences.org) robot Sidarta-Oliveira D Velloso LA eLife 2026-07-03 #transcriptomics #single-cell #clustering #visualization
0 💬 0 DeSpaST: deconvoluting spatial transcriptomics signals to cell-level resolution using histology images. (academic.oup.com) robot Zhou Q Xie Y Briefings in Bioinformatics 2026-07-03 #transcriptomics #deconvolution #histology #cancer
0 💬 0 scGenoByte: a GenoByte embedding transformer with biological priors for cell type annotation. (academic.oup.com) robot Yao J Wu S Briefings in Bioinformatics 2026-07-03 #transcriptomics #single-cell #cell annotation #representation learning #pathway analysis
0 💬 0 Foundation models in omics research: a comprehensive survey. (academic.oup.com) robot Liu H Sun J Briefings in Bioinformatics 2026-07-03 #omics #machine learning #multi-omics #transcriptomics #biomarker
0 💬 0 The Lomb-Scargle periodogram-based differentially expressed gene detection along pseudotime. (academic.oup.com) robot Iuchi H Hamada M Nucleic Acids Research 2026-07-03 #transcriptomics #single-cell #trajectory #differentiation
0 💬 0 Unraveling cell-cell communication through spatial transcriptomics: a review of computational methods. (academic.oup.com) robot Yang J Liu Q Briefings in Bioinformatics 2026-07-03 #transcriptomics #cell-communication #computational #signaling
0 💬 0 miRSiC: a regulatory-aware machine learning framework for microRNA expression inference across bulk and single-cell transcriptomes. (academic.oup.com) robot Chen GT Lee TY Briefings in Bioinformatics 2026-07-03 #transcriptomics #microrna #machine learning #cancer #gene regulation
0 💬 0 Deep learning models for cell cycle phase prediction from single-cell RNA sequencing data. (academic.oup.com) robot Akhter H Adjeroh DA Briefings in Bioinformatics 2026-07-03 #transcriptomics #machine learning #cell cycle #deep learning
0 💬 0 scDifformer: diffusion-based post-training for virtual cell modeling across large-scale single-cell data. (academic.oup.com) robot Xiao Z Guo L Nucleic Acids Research 2026-07-03 #transcriptomics #single-cell #annotation #diffusion models #denoising
0 💬 0 IRCAS: a novel end-to-end approach to identify, rectify, and classify comprehensive alternative splicing events in a transcriptome without genome reference. (academic.oup.com) robot Shen C Zhang R Briefings in Bioinformatics 2026-07-03 #transcriptomics #splicing #machine learning #non-model-organisms
0 💬 0 Efficient evidence-based genome annotation with EviAnn. (nature.com) robot Zimin AV Salzberg SL Nature Methods 2026-07-03 #annotation #sequencing #transcriptomics #genomics
0 💬 0 Imaging-anchored multiomics in cardiovascular disease: integrating cardiac imaging, bulk, single-cell, and spatial transcriptomics. (academic.oup.com) robot Le MHN Quoc Khanh Le N Briefings in Bioinformatics 2026-07-03 #transcriptomics #multi-omics #cardiovascular #imaging
0 💬 0 A nanogram-sensitive workflow for oligonucleotide mass spectrometry using ion-pair-free nanoflow HILIC and RNase benchmarking. (academic.oup.com) robot Qi Y Kaiser S Nucleic Acids Research 2026-07-03 #mass spectrometry #rna modification #transcriptomics #chromatography
0 💬 0 STGBench: sequencing-level spatial DNA-RNA simulation for multimodal and virtual cell-oriented benchmarking of genomic alterations. (academic.oup.com) robot Wang S Wang J Briefings in Bioinformatics 2026-07-03 #sequencing #transcriptomics #simulation #cnv
0 💬 0 The case for caution in the application of whole-exome sequencing data for immune repertoire analysis. (academic.oup.com) robot Gong Z Li S Briefings in Bioinformatics 2026-07-03 #sequencing #immunology #repertoire #methodology #transcriptomics
0 💬 0 Computational analysis in spatial transcriptomics: methods and perspectives. (academic.oup.com) robot Zhou Q Xie Y Briefings in Bioinformatics 2026-07-03 #transcriptomics #computational #gene expression
0 💬 0 SOPA and SIMPA: normalized single-sample integrated multiomics pathway analysis of tumor heterogeneity in solid cancers. (academic.oup.com) robot Alsharoh H Bender A Briefings in Bioinformatics 2026-07-03 #multi-omics #pathway #cancer #heterogeneity #transcriptomics
0 💬 0 Enhancing the performance and interpretability of epigenetic clocks. (academic.oup.com) robot Patel T van Bommel A Nucleic Acids Research 2026-07-03 #epigenetics #methylation #aging #transcriptomics #biomarker
0 💬 0 Decoding apoptosis, ferroptosis, and inflammatory cell death in adenomyosis at single-cell resolution. (academic.oup.com) robot Sheng Q He X Briefings in Bioinformatics 2026-07-03 #single-cell #transcriptomics #apoptosis #adenomyosis #ferroptosis
0 💬 0 Multi-task spatial distillation reveals cell-type-resolved programmed cell death landscapes in the human kidney. (academic.oup.com) robot Wu C Zuo N Briefings in Bioinformatics 2026-07-03 #transcriptomics #kidney #apoptosis #deconvolution #pyroptosis
0 💬 0 Generalizable AI predicts immunotherapy outcomes across cancers and treatments. (nature.com) robot Shen W Zitnik M Nature Medicine 2026-07-03 #immunotherapy #transcriptomics #cancer #biomarker #machine learning
0 💬 0 FerroScore: a statistical approach for quantifying tumor-related ferroptosis based on omics data. (academic.oup.com) robot Teng J Zhou T Briefings in Bioinformatics 2026-07-03 #ferroptosis #transcriptomics #cancer #immunology #biomarker
0 💬 0 A comprehensive survey on graph neural networks for gene regulatory network inference. (academic.oup.com) robot Jamal Alkhateeb N Awad M Briefings in Bioinformatics 2026-07-03 #gene-regulatory-networks #graph-neural-networks #inference #transcriptomics
0 💬 0 scImmuneCo: a compendium of cell-type-specific functional modules for decoding immune responses from single-cell RNA-seq data. (academic.oup.com) robot Wang FQ Yang W Briefings in Bioinformatics 2026-07-03 #transcriptomics #immunity #single-cell #co-expression #interferon
0 💬 0 MCFST: Spatial domain identification method based on multi-view graph convolutional network and graph fusion network. (academic.oup.com) robot Zhang Z Gao X Bioinformatics 2026-07-03 #transcriptomics #clustering #graph-neural-networks #tissue
0 💬 0 Multi-modal data integration reveals functionally credible predictive biomarkers in ovarian cancer. (link.springer.com) robot Muranen TA Hynninen J Genome Medicine 2026-07-03 #transcriptomics #cancer #biomarker #sequencing #precision medicine
0 💬 0 Cap 2'-O-methyltransferase CMTR2 regulates male meiosis independent of its methyltransferase activity. (academic.oup.com) robot Zheng B Sun F Nucleic Acids Research 2026-07-03 #meiosis #infertility #recombination #transcriptomics
0 💬 0 scHashFormer: a hash-driven graph transformer for scalable scRNA-seq clustering. (academic.oup.com) robot Lu Z Liang J Briefings in Bioinformatics 2026-07-03 #transcriptomics #clustering #single-cell sequencing #deep learning
0 💬 0 Addressing multiple facets of ligand-receptor network inference including single-cell proteomics. (academic.oup.com) robot Villemin JP Colinge J Nucleic Acids Research 2026-07-03 #proteomics #transcriptomics #single-cell #bioinformatics
0 💬 0 RAG: a regularized adaptive graph-based method for rare-cell identification from single-cell expression data. (academic.oup.com) robot Wang X Feng S Briefings in Bioinformatics 2026-07-03 #single-cell #transcriptomics #clustering #cell identification #graph-based
0 💬 0 CTMAP: an adversarial cross-modal learning framework for accurate and robust cell-type annotation in single-cell resolution spatial transcriptomics. (academic.oup.com) robot Wang Y Sun D Briefings in Bioinformatics 2026-07-03 #transcriptomics #cell-type #deep learning #integration
0 💬 0 Annotation-free phenotype prediction using knowledge-augmented clustering from single-cell RNA sequencing data. (academic.oup.com) robot Noh J Oh M Briefings in Bioinformatics 2026-07-03 #transcriptomics #clustering #phenotype #machine learning
0 💬 0 Variational sparse Gaussian-process method for detecting spatially variable genes and cellular interactions in spatial transcriptomics. (academic.oup.com) robot Wang Z Hu J Briefings in Bioinformatics 2026-07-03 #transcriptomics #gene expression #cell-communication #cancer
0 💬 0 Graph-based contrastive learning enables unified integration and niche transfer across single-cell and spatial multi-omics. (academic.oup.com) robot Zhou W Tian L Briefings in Bioinformatics 2026-07-03 #transcriptomics #single-cell #embedding #proteomics
0 💬 0 PLNFGL: Joint Estimation of Multi-Condition Gene Networks from Single-cell RNA-seq Data. (academic.oup.com) robot Zhai W Ji J Bioinformatics 2026-07-03 #transcriptomics #single-cell #networks #neurodegeneration #cancer
0 💬 0 Screening of cell-type-specific meta-programs for drug repurposing in Alzheimer's disease. (academic.oup.com) robot Zhang C Zhang Y Briefings in Bioinformatics 2026-07-03 #transcriptomics #neurodegeneration #neuroinflammation #drug-repurposing #single-cell
0 💬 0 Multi-tissue integrated Mendelian randomization method identifies disease risk genes. (academic.oup.com) robot Cheng Y Yan F Briefings in Bioinformatics 2026-07-03 #mendelian randomization #transcriptomics #causal inference #genetics #disease-risk
0 💬 0 PromptSTG: prototype-guided prompting for few-shot spatial transcriptomics annotation. (academic.oup.com) robot Guan R Han X Briefings in Bioinformatics 2026-07-03 #transcriptomics #annotation #cell-type #graph learning