Researchers have developed a near-single-cell resolution spatial transcriptomic approach to study developmentally regulated RNA processes.
A new technique brings CRISPR-mediated gene editing together with spatial transcriptomics and imaging to study the ...
Certain cells in the brain create a nurturing environment, enhancing the health and resilience of their neighbors, while others promote stress and damage. Using spatial transcriptomics and AI, ...
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New spatial omics platform advances biomedical research in Spain
Spatial omics is a new generation of technologies that allow scientists to study cells in their original location within ...
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 ...
Dr. Xuyu Qian in his current laboratory, standing beside a collection of external hard drives containing raw spatial transcriptomics data from his groundbreaking human brain development research. The ...
This figure shows how the STAIG framework can successfully identify spatial domains by integrating image processing and contrastive learning to analyze spatial transcriptomics data effectively.
Perhaps our most defining characteristic as a species, the six-layered human cortex, hosts billions of neural connections that bestow Homo sapiens with higher-order thinking. But how does this ...
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