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#transcriptomics — Sunday, March 01, 2026 (59 items)

0 💬 0 Developmental convergence and divergence in human stem cell models of autism. (nature.com) robot Gordon A Geschwind DH Nature 2026-03-01 #autism #transcriptomics #differentiation #crispr #organoid
0 💬 0 Dissecting gene regulatory networks governing human cortical cell fate. (nature.com) robot Ding JW Pollen AA Nature 2026-03-01 #transcriptomics #neurogenesis #crispr #differentiation #developmental
0 💬 0 Neuro-epithelial circuits promote sensory convergence and intestinal immunity. (nature.com) robot Zhang W Artis D Nature 2026-03-01 #immunity #transcriptomics #intestinal #inflammation #helminth
0 💬 0 Rete ridges form via evolutionarily distinct mechanisms in mammalian skin. (nature.com) robot Thompson SM Driskell RR Nature 2026-03-01 #transcriptomics #morphogenesis #evolution #epidermal
0 💬 0 BCMA-directed mRNA CAR-T cell therapy for myasthenia gravis: exploratory biomarker analysis of a placebo-controlled phase 2b trial. (nature.com) robot Fedak RR Jewell CM Nature Medicine 2026-03-01 #immunotherapy #autoimmune #myasthenia gravis #transcriptomics #biomarker
0 💬 0 Three-dimensional genome reorganization foreshadows zygotic genome activation in Drosophila. (nature.com) robot Maziak N Vaquerizas JM Nature Genetics 2026-03-01 #chromatin #transcriptomics #embryogenesis #modeling
0 💬 0 Reconstructing 3D transcriptional organization from spatial transcriptomics reveals consistent oncogenic translocations and developmental dynamics. (academic.oup.com) robot Sheng Y Cheng Li S Briefings in Bioinformatics 2026-03-01 #transcriptomics #modeling #cancer
0 💬 0 Response to "Addressing biases and limitations in feature attribution for circRNA modification profiling". (academic.oup.com) robot Li J Zhang Y Briefings in Bioinformatics 2026-03-01 #transcriptomics #modeling #sequencing
0 💬 0 Stoichiometry-preserving and stochasticity-aware identification of m6A from direct RNA sequencing. (academic.oup.com) robot Wang F Zou M Briefings in Bioinformatics 2026-03-01 #transcriptomics #sequencing #methylation #deep learning
0 💬 0 Multimodal antigenic escape to GPRC5D-targeted T cell engagers in multiple myeloma. (nature.com) robot Lee H Bahlis NJ Nature Medicine 2026-03-01 #immunotherapy #cancer #transcriptomics #mutation #amr
0 💬 0 A deep adversarial network model for multi-task analysis of single-cell omics data. (academic.oup.com) robot Xu J Zeng X Briefings in Bioinformatics 2026-03-01 #transcriptomics #clustering #integration #denoising
0 💬 0 Uncovering causal relationships in single-cell omic studies with causarray. (academic.oup.com) robot Du JH Roeder K Briefings in Bioinformatics 2026-03-01 #causal inference #single-cell #transcriptomics #crispr #confounding
0 💬 0 Spatial-ZEDNet : a unified spatial transcriptomics framework for detecting differential gene activation and expression. (academic.oup.com) robot Egbon OA Anchang B Briefings in Bioinformatics 2026-03-01 #transcriptomics #differential expression #inflammation #modeling
0 💬 0 Computational framework for therapeutic target discovery via perturbation simulation: application to cystic fibrosis airway disease. (academic.oup.com) robot Sun G Zhou YH Briefings in Bioinformatics 2026-03-01 #transcriptomics #computational modeling #drug discovery #systems biology #cystic fibrosis
0 💬 0 A cancer-type-aware framework for robust multimodal survival prediction under missing modalities. (academic.oup.com) robot Song Y Lin M Briefings in Bioinformatics 2026-03-01 #prognosis #cancer #modeling #multimodal #transcriptomics
0 💬 0 ORANGE: a machine learning approach for modeling tissue-specific aging from transcriptomic data. (academic.oup.com) robot Jalal W Rahman MS Briefings in Bioinformatics 2026-03-01 #transcriptomics #modeling #aging #machine learning #mortality
0 💬 0 SpatialDG: a novel spatial domain identification method for spatially resolved transcriptomics data based on dual-graph neural network. (academic.oup.com) robot Wu J Izzi V Briefings in Bioinformatics 2026-03-01 #transcriptomics #clustering #modeling #tissue
0 💬 0 AICellType: a large language model-based platform for accurate cell type annotation. (academic.oup.com) robot Cheng C Jin M Briefings in Bioinformatics 2026-03-01 #transcriptomics #clustering #machine learning #annotation
0 💬 0 The changing landscape of gene expression analysis. (academic.oup.com) robot Zhao Q Palpant NJ Briefings in Bioinformatics 2026-03-01 #transcriptomics #sequencing #bioinformatics #clustering
0 💬 0 Integrating feature selection with unsupervised deep embedding for clustering single-cell RNA-seq data. (academic.oup.com) robot Zhong C Wei Z Briefings in Bioinformatics 2026-03-01 #transcriptomics #clustering #sequencing #modeling
0 💬 0 scGPD: single-cell informed gene panel design for targeted spatial transcriptomics. (academic.oup.com) robot Guo Y Zhao H Briefings in Bioinformatics 2026-03-01 #transcriptomics #single-cell #feature selection #deep learning
0 💬 0 Quantifying transcript complexity via the condition number of gene-specific random matrix. (academic.oup.com) robot Zhang B Zou M Briefings in Bioinformatics 2026-03-01 #transcriptomics #sequencing #quantification #splicing
0 💬 0 scSCCNIA: similarity matrix based contrastive clustering with neighbor information aggregation for single-cell RNA sequencing data. (academic.oup.com) robot Wang J Zheng CH Briefings in Bioinformatics 2026-03-01 #clustering #transcriptomics #sequencing #modeling
0 💬 0 The splice of life: how alternative splicing shapes regulatory and phenotypic evolution. (link.springer.com) robot Hunter CE Xing Y The EMBO Journal 2026-03-01 #transcriptomics #splicing #evolution #proteomics
0 💬 0 Improving gene isoform quantification with miniQuant. (nature.com) robot Li H Au KF Nature Biotechnology 2026-03-01 #transcriptomics #sequencing #quantification #isoforms #differentiation
0 💬 0 DuaST: an integrated deep learning framework for spatial transcriptomics with cross-branch interaction. (academic.oup.com) robot Liang X Luo J Briefings in Bioinformatics 2026-03-01 #transcriptomics #deep learning #integration
0 💬 0 stVCR: spatiotemporal dynamics of single cells. (nature.com) robot Peng Q Li T Nature Methods 2026-03-01 #transcriptomics #modeling #differentiation #migration #proliferation
0 💬 0 STGNET: extending panel coverage in imaging-based spatial transcriptomics using deep generative adversarial networks. (academic.oup.com) robot Wang T Chen J Briefings in Bioinformatics 2026-03-01 #transcriptomics #imputation #deep learning #gene expression
0 💬 0 Computational identification of lineage-committed precursors in mammalian organogenesis reveals a novel hematopoietic enhancer regulating Bhlhe41 expression. (academic.oup.com) robot Jin L Yu Y Briefings in Bioinformatics 2026-03-01 #transcriptomics #hematopoiesis #epigenomics #developmental #cis-regulation
0 💬 0 A causal glycerophospholipid-IL-18R1-CD9 axis connects lipid metabolism and T-cell activation in atopic dermatitis. (academic.oup.com) robot Zhang PA Li J Briefings in Bioinformatics 2026-03-01 #atopic dermatitis #metabolism #immunity #transcriptomics #inflammation
0 💬 0 Co-expression network multivariate regression. (academic.oup.com) robot Lee H Chen S Briefings in Bioinformatics 2026-03-01 #transcriptomics #co-expression #regression #multivariate
0 💬 0 NyxBind: enhancing deep neural representations for transcription factor binding site prediction via contrastive learning. (academic.oup.com) robot Yang X Zhang Y Briefings in Bioinformatics 2026-03-01 #transcriptomics #modeling #sequencing #machine learning
0 💬 0 Convergent evolution of scavenger cell development at brain borders. (nature.com) robot Gaudi AU Hogan BM Nature 2026-03-01 #immunity #evolution #transcriptomics #differentiation #macrophage
0 💬 0 Single-cell atlas of the developing Down syndrome brain cortex. (nature.com) robot Lattke M De Paola V Nature Medicine 2026-03-01 #transcriptomics #neurodevelopment #down syndrome #chromatin #intellectual disability
0 💬 0 JMJD2 regulates enhancer-promoter interactions via biomolecular condensate formation. (nature.com) robot Jiang S Ding J Nature Genetics 2026-03-01 #transcriptomics #chromatin #condensates #proteomics #reprogramming
0 💬 0 STORIES: learning cell fate landscapes from spatial transcriptomics using optimal transport. (nature.com) robot Huizing GJ Cantini L Nature Methods 2026-03-01 #transcriptomics #developmental biology #trajectory inference #optimal transport #cell differentiation
0 💬 0 SpaFun: discovering domain-specific spatial expression patterns and new disease-relevant genes using functional principal component analysis. (academic.oup.com) robot Jiang X Xu L Briefings in Bioinformatics 2026-03-01 #transcriptomics #clustering #cancer
0 💬 0 Integrative multi-omics analysis reveals microbiota alterations and clinical indicators predictive of pulmonary fibrosis progression following SARS-CoV-2 infection. (academic.oup.com) robot Liu C Chen Y Briefings in Bioinformatics 2026-03-01 #metagenomics #microbiome #transcriptomics #fibrosis #modeling
0 💬 0 Advances in predicting omics profiles from imaging data. (academic.oup.com) robot Beachum AH Xu L Briefings in Bioinformatics 2026-03-01 #transcriptomics #imaging #deep learning #prediction #genomics
0 💬 0 Integrating and mapping single-cell transcriptomics across the entire gene expression space. (academic.oup.com) robot Ding S Ming J Briefings in Bioinformatics 2026-03-01 #transcriptomics #batch effect #integration #deep learning
0 💬 0 Benchmarking cell-type-specific spatially variable gene detection methods. (academic.oup.com) robot Yao H Fang Z Briefings in Bioinformatics 2026-03-01 #transcriptomics #benchmarking #cell-type #clustering
0 💬 0 GDSim: accurate simulation for single-cell transcriptomes based on the guided diffusion model. (academic.oup.com) robot Wang T Chen J Briefings in Bioinformatics 2026-03-01 #transcriptomics #modeling #sequencing #clustering
0 💬 0 SpaJoint: a transfer learning method for spatial transcriptomics deconvolution. (academic.oup.com) robot Li Z Xu X Briefings in Bioinformatics 2026-03-01 #transcriptomics #deconvolution #transfer learning #spatial analysis #cell typing
0 💬 0 BACON: decoding the dynamic social networks of complex microbial communities at single-cell resolution. (academic.oup.com) robot Qu W Shen Y Briefings in Bioinformatics 2026-03-01 #transcriptomics #microbiome #quorum sensing #single-cell #virulence
0 💬 0 Ancestry and somatic profile indicate acral melanoma origin and prognosis. (nature.com) robot Basurto-Lozada P Robles-Espinoza CD Nature 2026-03-01 #melanoma #transcriptomics #ancestry #cancer #mutation
0 💬 0 Atlas-guided discovery of transcription factors for T cell programming. (nature.com) robot Chung HK Wang W Nature 2026-03-01 #transcription factor #transcriptomics #immunity #crispr #cancer
0 💬 0 Biological insights into schizophrenia from ancestrally diverse populations. (nature.com) robot Bigdeli TB Roussos P Nature 2026-03-01 #genome-wide association #schizophrenia #transcriptomics #polygenic
0 💬 0 Spotting a unicorn: spatial transcriptome analysis of the eyelid reveals gene regulatory networks enriched in Moll glands. (academic.oup.com) robot Konecny T Schneider MR Briefings in Bioinformatics 2026-03-01 #transcriptomics #metabolism #gene regulation
0 💬 0 BEASTsim-a benchmarking and analysis platform for spatial transcriptomics simulations. (academic.oup.com) robot Garcia-Carpintero TB Rottger R Briefings in Bioinformatics 2026-03-01 #transcriptomics #simulation #benchmarking #modeling
0 💬 0 Multimodal bioinformatic analyses of genome-scale expression beyond gene-centric differential expression. (academic.oup.com) robot Nuanpirom J Charoensawan V Briefings in Bioinformatics 2026-03-01 #biomarker #transcriptomics #gene expression #network inference #single-cell