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Computational generation of high-content digital organs at single-cell resolution
Complex digital representations of organs were reconstructed by computationally generating virtual slices from sparsely sampled planar spatial transcriptomic data, exemplified by a 38-million-cell mouse brain atlas that bridges gaps between tissue sections and preserves the continuous three-dimensional (3D) molecular landscape at single-cell resolution.
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Spotlight on methods to study cancer
This Collection showcases several recent Reviews, Perspectives, Comments, research papers, and news articles discussing and reporting methods to study the complex biology of tumors.