What this topic covers
Spatial transcriptomics papers often connect molecular expression with tissue context, pathology, immune niches, cancer biology, development, and neurobiology.
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Follow spatial transcriptomics research on tissue architecture, spatial omics platforms, tumor microenvironment maps, atlases, and computational analysis.
Spatial transcriptomics papers often connect molecular expression with tissue context, pathology, immune niches, cancer biology, development, and neurobiology.
Start with spatial transcriptomics, then refine with tumor microenvironment, Visium, MERFISH, Xenium, spatial proteomics, pathology, or a tissue type.
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Research context
They preserve tissue location, so the strongest papers connect gene expression, cell neighborhoods, morphology, and clinical or biological context.
Add the platform, tissue, disease area, or analysis method to get more relevant papers from broad spatial omics results.