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Scientists at China Pharmaceutical University have launched GseaVis, a groundbreaking R package designed to transform how researchers visualize and ...
New collaboration between Aligning Science Across Parkinson’s and Allen Institute creates a common language for visualizing ...
Single-cell genomics has unlocked new frontiers in understanding cell types in the brain and targeting them with therapies.
Studying how cells work inside a living body is one of the most powerful ways to understand health and disease. However, looking deep inside live tissue is extremely challenging, especially when ...
In an industry where 90 percent of drug candidates fail before reaching the market, a handful of startups are betting ...
Artists are nominated by a Smithsonian research staff member and then selected by a panel of Smithsonian art curators and representatives from the science, history and culture communities. More than ...
In this study, researcher developed a new imaging approach that combines two powerful techniques to solve this problem. First ...
The Huck Institutes of the Life Sciences at Penn State has secured a major new asset in structural biology and mechanobiology ...
The authors proposed two hypotheses: first, that methamphetamine induces neuroinflammation, and second, that it alters neuronal stem cell differentiation. These are valuable hypotheses, and the ...
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What Is Spatial Transcriptomics?
Uncovering gene expression patterns, spatial transcriptomics bridges molecular analysis and tissue morphology, advancing research in various biological fields.
At the heart of modern economic systems lies a deeply ingrained, yet often unquestioned assumption: that competition is virtuous and essential for progress. But beneath this carefully constructed ...
Whole-mount 3D imaging at the cellular scale is a powerful tool for exploring complex processes during morphogenesis. In organoids, it allows examining tissue architecture, cell types, and morphology ...