4.7 Article

Continuously tracing brain-wide long-distance axonal projections in mice at a one-micron voxel resolution

Journal

NEUROIMAGE
Volume 74, Issue -, Pages 87-98

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2013.02.005

Keywords

Brain-wide long-distance axonal projection; Mouse brain; Micro-optical sectioning tomography; Fluorescence imaging

Funding

  1. National Nature Science Foundation of China [81127002, 30925013]
  2. Science Fund for Creative Research Group of China [61121004]
  3. 985 Project

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Revealing neural circuit mechanisms is critical for understanding brain functions. Significant progress in dissecting neural connections has been made using optical imaging with fluorescence labels, especially in dissecting local connections. However, acquiring and tracing brain-wide, long-distance neural circuits at the neurite level remains a substantial challenge. Here, we describe a whole-brain approach to systematically obtaining continuous neuronal pathways in a fluorescent protein transgenic mouse at a one-micron voxel resolution. This goal is achieved by combining a novel resin-embedding method for maintaining fluorescence, an automated fluorescence micro-optical sectioning tomography system for long-term stable imaging, and a digital reconstruction-registration-annotation pipeline for tracing the axonal pathways in the mouse brain. With the unprecedented ability to image a whole mouse brain at a one-micron voxel resolution, the long-distance pathways were traced minutely and without interruption for the first time. With advancing labeling techniques, our method is believed to open an avenue to exploring both local and long-distance neural circuits that are related to brain functions and brain diseases down to the neurite level. (C) 2013 Elsevier Inc. All rights reserved.

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