A new spatial transcriptomics framework compares tumor “floor plans,” revealing conserved spatial groups that may relate ...
Spatial transcriptomics has transformed brain research by preserving single-cell molecular resolution within intact tissue coordinates. The brain, organized across cortical layers, long-range ...
A new RNA search engine can scan millions of cells in seconds for mutations, pathogens, isoforms and other biological clues.
In a recent study published in the journal Nature, researchers developed spatial aging clocks using single-cell transcriptomics to explore cell-type-specific interactions and their impact on brain ...
Biological tissues are made up of different cell types arranged in specific patterns, which are essential to their proper functioning. Understanding these spatial arrangements is important when ...
Spatial transcriptomics provides a unique perspective on the genes that cells express and where those cells are located. However, the rapid growth of the technology has come at the cost of ...
Biological tissues are made up of different cell types arranged in specific patterns, which are essential to their proper functioning. Understanding these spatial arrangements is important when ...
A team of Vanderbilt researchers has released a new benchmarking study that aims to assist scientists in selecting the most effective methods for analyzing spatial transcriptomics (ST) data. ST ...