Spatial transcriptomics has transformed brain research by preserving single-cell molecular resolution within intact tissue coordinates. The brain, organized across cortical layers, long-range ...
The global transcriptome sequencing market is projected to reach $11.8 billion by 2035, growing at a 7.3% CAGR from 2025 to 2035. Growth is driven by falling sequencing costs, precision medicine, drug ...
In 15 days, scientists grew bovine cell structures that contained muscle, nerve, and blood vessel precursors in a valuable ...
Human biospecimens can bring drug discovery closer to human disease, but their value depends on far more than the sample ...
Over the course of a decade, researchers studied the microbes living in and on thousands of people, investigating how the ...
A new spatial transcriptomics framework compares tumor “floor plans,” revealing conserved spatial groups that may relate ...
Spatial transcriptomics is a powerful tool to create a detailed map of not just how genes are expressed in a piece of tissue, ...
Spatial transcriptomics includes a range of technologies, from sequencing-based platforms such as Visium, Slide-seq, and HDST to imaging-based methods including MERFISH, seqFISH+, and CosMx. Each ...
Spatial transcriptomics is a powerful tool for creating a detailed map of not just how genes are expressed in a piece of ...
For the first time, scientists have created a single-cell and spatial transcriptomics framework to investigate damage to ...
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