Role of endothelium-pericyte signaling in capillary blood flow response to neuronal activity

W Zhang, CM Davis, DM Zeppenfeld… - Journal of Cerebral …, 2021 - journals.sagepub.com
Local blood flow in the brain is tightly coupled to metabolic demands, a phenomenon termed
functional hyperemia. Both capillaries and arterioles contribute to the hyperemic response to …

Role of endothelium-pericyte signaling in capillary blood flow response to neuronal activity

W Zhang, CM Davis, DM Zeppenfeld… - Journal of Cerebral …, 2021 - ohsu.elsevierpure.com
Local blood flow in the brain is tightly coupled to metabolic demands, a phenomenon termed
functional hyperemia. Both capillaries and arterioles contribute to the hyperemic response to …

Role of endothelium-pericyte signaling in capillary blood flow response to neuronal activity.

W Zhang, CM Davis, DM Zeppenfeld… - Journal of Cerebral …, 2021 - search.ebscohost.com
Local blood flow in the brain is tightly coupled to metabolic demands, a phenomenon termed
functional hyperemia. Both capillaries and arterioles contribute to the hyperemic response to …

Role of endothelium-pericyte signaling in capillary blood flow response to neuronal activity

W Zhang, CM Davis, DM Zeppenfeld… - Journal of cerebral …, 2021 - pubmed.ncbi.nlm.nih.gov
Local blood flow in the brain is tightly coupled to metabolic demands, a phenomenon termed
functional hyperemia. Both capillaries and arterioles contribute to the hyperemic response to …

[HTML][HTML] Role of endothelium-pericyte signaling in capillary blood flow response to neuronal activity

W Zhang, CM Davis, DM Zeppenfeld… - Journal of Cerebral …, 2021 - ncbi.nlm.nih.gov
Local blood flow in the brain is tightly coupled to metabolic demands, a phenomenon termed
functional hyperemia. Both capillaries and arterioles contribute to the hyperemic response to …

Role of endothelium-pericyte signaling in capillary blood flow response to neuronal activity.

W Zhang, CM Davis, DM Zeppenfeld… - Journal of Cerebral …, 2021 - europepmc.org
Local blood flow in the brain is tightly coupled to metabolic demands, a phenomenon termed
functional hyperemia. Both capillaries and arterioles contribute to the hyperemic response to …