Anatomy of nerve fiber bundles at micrometer-resolution in the vervet monkey visual system

Author:

Takemura Hiromasa12ORCID,Palomero-Gallagher Nicola345ORCID,Axer Markus3,Gräßel David3ORCID,Jorgensen Matthew J6ORCID,Woods Roger7,Zilles Karl38

Affiliation:

1. Center for Information and Neural Networks (CiNet), National Institute of Information and Communications Technology, and Osaka University, Osaka, Japan

2. Graduate School of Frontier Biosciences, Osaka University, Osaka, Japan

3. Institute of Neuroscience and Medicine INM-1, Research Centre Jülich, Jülich, Germany

4. Department of Psychiatry, Psychotherapy and Psychosomatics, Medical Faculty, RWTH Aachen, Aachen, Germany

5. C. & O. Vogt Institute for Brain Research, Heinrich-Heine-University, Düsseldorf, Germany

6. Department of Pathology, Section on Comparative Medicine, Wake Forest School of Medicine, Winston-Salem, United States

7. Ahmanson-Lovelace Brain Mapping Center, Departments of Neurology and of Psychiatry and Biobehavioral Sciences, David Geffen School of Medicine, UCLA, Los Angeles, United States

8. JARA - Translational Brain Medicine, Aachen, Germany

Abstract

Although the primate visual system has been extensively studied, detailed spatial organization of white matter fiber tracts carrying visual information between areas has not been fully established. This is mainly due to the large gap between tracer studies and diffusion-weighted MRI studies, which focus on specific axonal connections and macroscale organization of fiber tracts, respectively. Here we used 3D polarization light imaging (3D-PLI), which enables direct visualization of fiber tracts at micrometer resolution, to identify and visualize fiber tracts of the visual system, such as stratum sagittale, inferior longitudinal fascicle, vertical occipital fascicle, tapetum and dorsal occipital bundle in vervet monkey brains. Moreover, 3D-PLI data provide detailed information on cortical projections of these tracts, distinction between neighboring tracts, and novel short-range pathways. This work provides essential information for interpretation of functional and diffusion-weighted MRI data, as well as revision of wiring diagrams based upon observations in the vervet visual system.

Funder

Japan Society for the Promotion of Science

Horizon 2020 - Research and Innovation Framework Programme

National Institutes of Health

NIH

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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