
How to reveal hidden patterns in biology with AI
Explore the latest technologies and approaches driving the field of spatial biology & imaging AI
Spatial biology is transforming how scientists study life at the cellular level.
By combining advances in spatial transcriptomics, multiplexed imaging, and AI-driven analysis, researchers can now understand not only which genes and proteins are active, but where they function within the complex architecture of tissues. This shift from static molecular snapshots to spatially resolved data is revealing new insights into cell behavior, disease progression, and treatment response.
In this SelectScience editorial feature, explore the latest technologies and approaches driving the field of spatial biology. Discover how next-generation imaging platforms, multiomics techniques, and machine learning tools are helping scientists interpret complex spatial datasets and uncover new biological insights. Learn how researchers are applying these methods to investigate tumor microenvironments, monitor immune activity, and advance discoveries in cancer research, neuroscience, and regenerative medicine.

Michael Richardson, Director of Discovery & Digital Pathology, explains how Inotiv is unlocking new insights into disease mechanisms and therapeutic effectiveness using spatial transcriptomics, proteomics, and AI-powered image analytics.
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Powered by MICS technology, the MACSima Platform enables analysis of hundreds of protein markers and spatial RNA on a single tissue section, providing deeper insights into complex tissue environments.
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Jonas Greve Lauritsen from the University of Copenhagen discusses how collaboration with Tecan is advancing technologies to study the spatial significance of the gut microbiome and enhancing the lab’s research capabilities.
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Learn how to select and optimize 3D cell culture systems, explore the latest imaging and analysis technologies, and discover how spheroids and organoids are transforming translational research and disease modeling.
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Download this SelectScience guide to help you choose the right cell imaging system for applications including cell counting, viability, migration and invasion, immunofluorescence, and multiparameter analysis.
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In this article, experts discuss how the RareCyte Orion™ platform supports high-plex multiplex immunofluorescence imaging to reveal insights into the immune system, disease mechanisms, and therapeutic development.
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Watch this free webinar to discover how integrating PacBio’s Kinnex™ RNA library prep with the SPT Labtech firefly® liquid handler enables scalable, reproducible RNA sequencing workflows and supports large-scale projects.
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