Morning Overview on MSN
New spatial transcriptomics maps gene activity across whole bodies
A wave of spatial transcriptomics studies has produced gene-expression atlases that span entire organs and whole organisms, from mouse embryos to the roundworm C. elegans to 31 human tissues. These ...
Mount Sinai researchers have published the first organ-wide human skin spatial atlas from across the body. It provides an ...
Tumors contain many different types of cells organized in complex spatial patterns that can influence how the disease progresses. Because of this, it is hard to predict how a tumor will develop and ...
Andreas Pfenning discusses the techniques being developed and used to study neuronal heterogeneity and the therapeutic potential of his work.
The global initiative aims to profile up to 100,000 patient specimens to scale M-Optimus, the world model of biology, ...
A new single-cell atlas shows how epigenetic changes reshape brain cells during aging, revealing genomic instability, ...
Illumina is raising the curtain on its upcoming entry into spatial transcriptomics, with tech designed to help researchers explore cellular behavior mapped across complex tissues. The announcement ...
Knowing the location of a gene within intact tissue or a single cell allows scientists to unlock unknown cellular functions. This information is often lost in most genetic sequencing techniques, but ...
Spatial transcriptomics has revealed that premalignant pancreatic cells organise into defined microenvironments that interact ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results