• [WPS] 2025.04 W3

    1. Quantitative characterization of tissue states using multiomics and ecological spatial analysis | Nature Genetics 2. Spatially resolved transcriptomic analysis of the adult human prostate | Nature Genetics 3. Quantitative characterization of cell niches in spatially resolved omics data | Nature Genetics 4. Connectomics of predicted Sst transcriptomic types in mouse visual cortex | Nature…

  • [WPS] 2025.03 W3

    1. Comparison of the multivariate genetic architecture of eight major psychiatric disorders across sex | Nature Genetics 2. Sequencing in over 50,000 cases identifies coding and structural variation underlying atrial fibrillation risk | Nature Genetics 3. The contribution of genetic determinants of blood gene expression and splicing to molecular phenotypes and health outcomes | Nature…

  • [WPS] 2025.02 W2

    1. Quantifying cell divisions along evolutionary lineages in cancer | Nature Genetics 2. Predicting RNA-seq coverage from DNA sequence as a unifying model of gene regulation | Nature Genetics 3. Engineered heart muscle allografts for heart repair in primates and humans | Nature 4. Genomics yields biological and phenotypic insights into bipolar disorder | Nature…

  • [WPS] 2025.02 W1

    1. The next generation of in situ multi-omics | Nature Methods 2. Multimodal cell mapping with optimal transport 3. 2025.01.27.25321204v1.full.pdf 4. 2025.01.27.635074.full.pdf

  • [WPS] 2025.01 W3

    1. Cell state-dependent allelic effects and contextual Mendelian randomization analysis for human brain phenotypes | Nature Genetics 2. Transcript-specific enrichment enables profiling of rare cell states via single-cell RNA sequencing | Nature Genetics 3. Dissecting tumor transcriptional heterogeneity from single-cell RNA-seq data by generalized binary covariance decomposition | Nature Genetics 4. Massively parallel characterization of…

  • [WPS] 2024.12 W4

    1. Nucleosome fibre topology guides transcription factor binding to enhancers | Nature 2. Spatiotemporal modeling of molecular holograms: Cell 3. Decoding transcriptional identity in developing human sensory neurons and organoid modeling: Cell 4. State of the interactomes: an evaluation of molecular networks for generating biological insights | Molecular Systems Biology

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