HOMEE AI integrates advanced spatial intelligence—including Scene Understanding, Multimodal AI, Generative AI, and AI Agents—to power Xplorer and HOMEE CASA. These AI-driven solutions transform ...
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, ...
Researchers have conducted the comprehensive review of recent advances in multimodal natural interaction techniques for Extended Reality (XR) headsets, revealing significant trends in spatial ...
In a recent study published in Nature, researchers investigate the spatial organization of cancer cells and the tumor microenvironment by analyzing over one hundred tumor sections across six types of ...
This infographic explores the full landscape of spatial proteomics, highlighting core methodologies, emerging innovations, ...
In a landscape dominated by bold claims about the metaverse, spatial computing, and AI-powered everything, Rokid is taking a quieter —and arguably more grounded—approach to the future of augmented ...
In many real-world systems, such as fireflies flashing, Japanese tree frogs croaking, magnetic Janus particles, neurons ...
Visualizes functional protein-protein interactions directly within fixed tissue at subcellular resolution Enables simultaneous detection of protein proximity, RNA, and proteins on the same tissue ...
News-Medical.Net on MSN
Distinct spatial tumor–immune ecosystems predict lung cancer treatment response
Researchers at Moffitt Cancer Center have identified distinct spatial tumor–immune ecosystems that predict whether patients with advanced non–small cell lung cancer will benefit from immunotherapy.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results