Understanding how molecular changes shape brain function and disease requires more than measuring genes in bulk tissue. The brain contains highly ...
Researchers at the University of Cologne, University Hospital Cologne and the Max Planck Institute for Metabolism Research ...
Spatial transcriptomics is revolutionizing the study of tissue architecture, cellular states, and tumor-immune interactions in clinical specimens. This presentation introduces the principles and ...
New simulator and computational tools generate realistic ‘virtual tissues’ and map cell-to-cell ‘conversations’ from spatial transcriptomics data, potentially accelerating AI-driven discoveries in ...
Researchers at the University of Cologne, University Hospital Cologne, and the Max Planck Institute for Metabolism Research have developed a method ...
Since its inception, spatial biology has proven a revolutionary frontier in life science research. However, there is still plenty of room for growth in the systems we use to conduct spatial biology ...
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 ...
Single-cell transcriptome and spatial transcriptomics reveal KRAS-driven stemness and immune-suppressive microenvironment in a rare ampullary carcinoma ...
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