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Fluorescence microscopy tensor imaging representations for large-scale dataset analysis.


ABSTRACT: Understanding complex biological systems requires the system-wide characterization of cellular and molecular features. Recent advances in optical imaging technologies and chemical tissue clearing have facilitated the acquisition of whole-organ imaging datasets, but automated tools for their quantitative analysis and visualization are still lacking. We have here developed a visualization technique capable of providing whole-organ tensor imaging representations of local regional descriptors based on fluorescence data acquisition. This method enables rapid, multiscale, analysis and virtualization of large-volume, high-resolution complex biological data while generating 3D tractographic representations. Using the murine heart as a model, our method allowed us to analyze and interrogate the cardiac microvasculature and the tissue resident macrophage distribution and better infer and delineate the underlying structural network in unprecedented detail.

SUBMITTER: Vinegoni C 

PROVIDER: S-EPMC7101442 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Fluorescence microscopy tensor imaging representations for large-scale dataset analysis.

Vinegoni Claudio C   Fumene Feruglio Paolo P   Courties Gabriel G   Schmidt Stephen S   Hulsmans Maarten M   Lee Sungon S   Wang Rui R   Sosnovik David D   Nahrendorf Matthias M   Weissleder Ralph R  

Scientific reports 20200327 1


Understanding complex biological systems requires the system-wide characterization of cellular and molecular features. Recent advances in optical imaging technologies and chemical tissue clearing have facilitated the acquisition of whole-organ imaging datasets, but automated tools for their quantitative analysis and visualization are still lacking. We have here developed a visualization technique capable of providing whole-organ tensor imaging representations of local regional descriptors based  ...[more]

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