Spatial transcriptomics (ST) technologies reveal the spatial organization of gene expression in tissues, providing critical insights into development, neurobiology, and cancer. However, the high cost ...
This article explores how single-cell multiomics and spatial transcriptomics are illuminating early pregnancy, uncovering ...
Scientists at Duke-NUS Medical School have developed two powerful computational tools that could transform how researchers study the "conversations" between cells inside the body. The tools, called ...
The human brain is a fascinating and complex organ that supports numerous sophisticated behaviors and abilities that are ...
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Scientists solve the evolutionary mystery of how humans came to walk upright
The pelvis is often called the keystone of upright movement. It helps explain how human ancestors left life on all fours ...
Researchers have created a highly detailed spatial multiomic atlas to date of glioma tumour microenvironments.
Scientists chart a comprehensive cell atlas of the developing human reproductive system, offering new clues into congenital disorders.
Scientists at the Wellcome Sanger Institute and EMBL’s European Bioinformatics Institute (EMBL-EBI) in Hinxton mapped the ...
Plants form a critical model for understanding regulated cell death (RCD) as part of their sophisticated immune responses. In the ongoing evolutionary arms ...
New research has mapped the cell types that specialise to form reproductive organs in both sexes, identifying key genes and signals that drive this ...
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