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High-speed mapping of whole-mouse peripheral nerves at subcellular resolution
Journal article   Open access   Peer reviewed

High-speed mapping of whole-mouse peripheral nerves at subcellular resolution

Mei-Yu Shi, Yuchen Yao, Miao Wang, Qi Yang, Lufeng Ding, Rui Li, Yuanyuan Li, Haimeng Huang, Chao-Yu Yang, Zhao Zhou, …
Cell, Vol.188(14), pp.3897-3915
10/07/2025
Handle:
https://hdl.handle.net/10523/47025

Abstract

Vagus Nerve whole-body imaging tissue clearing VISoR peripheral nervous system spinal nerve sympathetic nerve
In contrast to the rapid advancements in mesoscale connectomic mapping of the mammalian brain, similar mapping of the peripheral nervous system has remained challenging due to the body size and complexity. Here, we present a high-speed blockface volumetric imaging system with an optimized workflow of whole-body clearing, capable of imaging the entire adult mouse at micrometer resolution within 40 h. Three-dimensional reconstruction of individual spinal fibers in Thy1-EGFP mice reveals distinct morphological features of sensory and motor projections along the ventral and dorsal rami. Immunostaining facilitates body-wide mapping of sympathetic nerves and their branches, highlighting their perivascular patterns in limb muscles, bones, and most visceral organs. Viral tracing elucidates the fine architecture of vagus nerves and individual vagal fibers, revealing unexpected projection routes to various organs. Our approach offers an effective means to achieve a holistic understanding of cellular-level interactions among different systems that underlie body physiology and disease.
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Published (Version of record) Open Access CC BY V4.0
url
https://doi.org/10.1016/j.cell.2025.06.011View
Published (Version of record) Open CC BY V4.0

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