Brainwide blood volume reflects opposing neural populations

A Agnès Landemard M Michael Krumin K Kenneth D. Harris M Matteo Carandini

Abstract

Abstract The supply of blood to brain tissue is thought to depend on the overall neural activity in that tissue 1–9 , and this dependence is thought to differ across brain regions 3,4,10–13 and across brain states 3,14–17 . However, studies supporting these views have measured neural activity as a bulk quantity and related it to blood supply following disparate events in different regions. Here we measure fluctuations in neuronal activity and blood volume across the mouse brain, and find that their relationship is consistent across brain states and brain regions but differs in two opposing brainwide neural populations. Functional ultrasound imaging (fUSI) revealed that whisking, a marker of arousal, is associated with brainwide fluctuations in blood volume. Simultaneous fUSI and Neuropixels recordings showed that neurons that increase activity with whisking have distinct haemodynamic response functions compared with those that decrease activity. Their summed contributions predicted blood volume across states. Brainwide Neuropixels recordings revealed that these opposing populations coexist in the entire brain. Their differing contributions to blood volume largely explain the apparent differences in blood volume fluctuations across regions. The mouse brain thus contains two neural populations with opposite relations to brain state and distinct relationships to blood supply, which together account for brainwide fluctuations in blood volume.

Article Details

Journal Nature
Volume / Issue Vol. 1, Issue 1
Published April 15, 2026
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (4)

A

Agnès Landemard

M

Michael Krumin

K

Kenneth D. Harris

M

Matteo Carandini