In this session you will learn how spatial transcriptomics with single-cell resolution enable detailed cellular mapping of ...
The rapid development of spatial transcriptomics (ST) technologies has greatly advanced the understanding of gene expression, tissue architecture, cellular composition, and disease mechanisms within ...
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 ...
For decades, neuroscience textbooks described the inside of a mouse’s nose as a loosely organized patchwork: olfactory ...
Spatial biology is a rapidly advancing discipline that examines biological molecules (such as DNA, RNA, and proteins) within their native locations in tissues. This approach offers critical insight ...
Neoadjuvant immunotherapy in combination with chemotherapy in resectable locally advanced head and neck squamous cell carcinoma: A randomized, open label, phase II clinical trial. This is an ASCO ...
For decades, neuroscientists assumed the inside of a mammal’s nose was essentially a jumble: more than a thousand types of ...
Race-specific survival prediction models for de novo metastatic breast cancer using machine learning. This is an ASCO Meeting Abstract from the 2025 ASCO Annual Meeting I. This abstract does not ...
Computational assessment identifies probe binding errors in a widely used commercial platform for spatial transcriptomics.