Researchers have developed REBOSEP, a computational workflow that maps gene expression as a continuous signal across tissue ...
The US government, Google, and Meta are joining forces with Zuckerberg-backed nonprofit Biohub in a USD 1.8 billion effort to ...
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 ...
Spatial transcriptomics (ST) shows which genes are being expressed and where within a tissue. Spatial metabolomics (SM), on ...
Technological development is key to improving the way hematologic cancer is diagnosed and treated. With this vision, the Josep Carreras Leukemia Research Institute is committed to the creation and ...
Researchers at the University of Liège have used imaging-based spatial single-cell transcriptomics to map the cellular ...
Kelly Parliament, staff application scientist at Beckman Coulter Life Sciences, discusses how automation is improving the efficiency of single-cell transcriptomic workflows. Single-cell ...
Transcriptomics is the study of the transcriptome—the complete set of RNA transcripts that are produced by the genome, under specific circumstances or in a specific cell—using high-throughput methods, ...
Transcriptomics represents a critical discipline in cancer research, enabling comprehensive mapping of gene expression profiles and the identification of fusion genes implicated in tumor development.
Scientists can now detect molecular features in place at single-cell resolution, but existing spatial transcriptomics technologies remain expensive and difficult for many laboratories to adopt.