Explore how AI-driven multiomics is reshaping drug discovery and personalized medicine development through innovative data ...
The human brain is a fascinating and complex organ that supports numerous sophisticated behaviors and abilities that are ...
Festive favorites of the holiday season, reindeer possess remarkable genomic adaptations that allow them to thrive in the ...
Kimchi may do far more than add flavor to meals—it could help fine-tune the human immune system. A clinical study using advanced single-cell genetic analysis found that regular kimchi consumption ...
Abstract: Single-cell RNA sequencing (scRNAseq) and spatial transcriptomics have emerged as a powerful tool for unraveling the heterogeneity of cell populations and understanding cellular dynamics at ...
Abstract: Recent advances in high-throughput spatial transcriptomics (ST) technologies now enable high-throughput molecular profiling of cells while maintaining their spatial organization within ...
Introduction: In the United States, 50-80% of chronic kidney disease (CKD) patients use a central venous catheter (CVC) for hemodialysis. Protracted exposure of CVCs against fragile venous walls ...
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.
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 ...
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