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Long-wavelength traveling waves of vasomotion modulate the perfusion of cortex

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ID: 000970DRAFT
Contact Kleinfeld, David
File Count 46
Size 29.6 MB
Created April 25, 2024
Last update May 22, 2024
Licenses: spdx:CC-BY-4.0
Access Information: dandi:OpenAccess

Brain arterioles are active, multi-cellular complexes whose diameters oscillate at ~ 0.1 Hz. We assess the physiological impact and spatiotemporal dynamics of vaso-oscillations in the awake mouse. First, vaso-oscillations in penetrating arterioles, which source blood from pial arterioles to the capillary bed, profoundly impact perfusion throughout neocortex. The modulation in flux during...

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Contributors
Broggini, Thomas ORCID logo
Duckworth, Jacob ORCID logo
Ji, Xiang ORCID logo
Liu, Rui ORCID logo
Xia, Xinyue
Machler, Philipp ORCID logo
Shaked, Iftach ORCID logo
Munting, Leon ORCID logo
Iyengar, Satish
Kotlikoff, Michael
van Veluw, Susanne ORCID logo
Vergassola, Massimo ORCID logo
Mishne, Gal ORCID logo
Kleinfeld, David ORCID logo
Funding information
National Institute of Health
- Award Number: R01 EB026936
National Institute of Health
- Award Number: U24 EB028942
National Institute of Health
- Award Number: R01 MH111438
National Institute of Health
- Award Number: R35 NS097265
National Institute of Health
- Award Number: R01 NS108472
National Institute of Health
- Award Number: U19 NS123717
National Science Foundation
- Award Number: CCF-2217058
Anatomy
Assets Summary
Species
Mus musculus - House mouse
Data Standard
Neurodata Without Borders (NWB)
RRID:SCR_015242
Number Of Subjects
46
Dandiset Actions
Files
Owners
JDuckworth1
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