The global multiomics market, valued at $3.41 billion in 2025, is forecast to reach $12.82 billion by 2036, growing at a 13.31% CAGR from 2026 to 2036. Growth is driven by precision medicine, ...
True three-dimensional (3D) spatial biology provides a more physiologically relevant view of tissue biology and cellular interactions than conventional single-cell or two-dimensional (2D) thin-tissue ...
This three-part webinar series brings together leading researchers to explore how spatial biology is evolving - from data ...
In 2024, n6 introduced icon96 ™, redefining expectations for PCR amplification in NGS library preparation. By monitoring each well in real time and stopping amplification the moment a sample reaches ...
A novel spatial transcriptomics atlas developed by Northwestern Medicine scientists may improve the understanding of niche cellular interactions in the gastrointestinal tract that promote the ...
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 ...
The tumor microenvironment (TME) of invasive lobular carcinoma (ILC) remains largely unexplored despite its clinical relevance and distinct biology. Using spatial transcriptomics, we reveal insights ...
Skin cancer is one of the most common malignant tumors worldwide, with its mortality rate showing a significant upward trend, thereby increasing the disease burden on patients and society. With the ...
ABSTRACT: Spatial transcriptomics is undergoing rapid advancements and iterations. It is a beneficial tool to significantly enhance our understanding of tissue organization and relationships between ...
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