Experiments
Searchable full-text extractions: founding hypothesis, core claims, experimental setups, key results and statistics — pulled out of each paper as structure. Search a cell line, an assay or an entity (e.g. HUH7) and find every paper that worked with it. This corpus stands on its own: most entries carry no reproduction assessment (yet).
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Integrated multi-omic atlas reveals the hierarchy of spatiotemporal regulatory networks of mouse gastrulation.
PMID 41526381 · PMC12902073 · Nature communications · 2026 · 8 claims · 8 setups
BioCRE, a novel bi-orientation regression algorithm, more accurately links genes to candidate cis-regulatory elements (CREs) than existing tools Signac and ArchR
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MultiSP deciphers tissue structure and multicellular communication from spatial multi-omics data.
PMID 41650976 · PMC13174227 · Cell genomics · 2026 · 7 claims · 5 setups
MultiSP outperforms existing spatial and single-cell multi-omics integration methods in detecting biologically accurate spatial domains across multiple spatial multi-omics technologies and tissue types
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An ancient genome duplication event drives the development and evolution of spinnerets in spiders.
PMID 41533794 · PMC12802834 · Science advances · 2026 · 8 claims · 8 setups
A single whole-genome duplication (WGD) event occurred in the Arachnopulmonata stem lineage during the Silurian (~438 Ma), supported by macrosynteny, Ks distributions, and WHALE gene-tree reconciliation.
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Has reproduction · 67
Sequencing mRNA from cryo-sliced Drosophila embryos to determine genome-wide spatial patterns of gene expression.
PMID 23951250 · PMC3741199 · PloS one · 2013 · 8 claims · 8 setups
Cryosectioning single blastoderm-stage D. melanogaster embryos along the A–P axis and sequencing mRNA from each slice yields reliable genome-wide spatial expression patterns.
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CLAMP: predicting specific protein-mediated chromatin loops in diverse species with a chromatin accessibility language model.
PMID 41555433 · PMC12903630 · Genome biology · 2026 · 8 claims · 8 setups
CLAMP, a chromatin-accessibility language model, predicts protein-mediated chromatin loops across 10 species, 18 proteins, and 24 cell types with superior performance versus existing methods.