Functional recruitment of red blood cells to rat brain microcirculation accompanying increased neuronal activity in cerebellar cortex

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SCANNING laser-Doppler flowmetry (SLDF) combines laser-Doppler flowmetry and laser scanning to provide images of cerebral blood flow (CBF) with high spatial and temporal resolution. We investigated the contribution of single vascular elements to the local increase of CBF accompanying increased neuronal activity in halothane-anesthetized rats. CBF was examined in the cerebellar cortex under control conditions and in response to electrical stimulation of parallel and climbing fibers. At rest, arterioles contributed 9%, venules 1113% and small vessels (< 20μm) 8-14%, while the background constituted 64-72% of the total SLDF signal. During activation the background signal decreased to 55-60% while the signal from arterioles increased to 1112%, from venules to 14-15% and from small vessels to 14-19%. The signal increase in small vessels that did not give any laser-Doppler signal at rest was due to functional recruitment of red blood cells to the capillary bed. We conclude that functional recruitment may be an integral part of the hemodynamic response accompanying neuronal activity.

Original languageEnglish
JournalNeuroReport
Volume10
Issue number16
Pages (from-to)3257-3263
Number of pages7
ISSN0959-4965
DOIs
Publication statusPublished - 1 Jan 1999

    Research areas

  • Brain activation, Cerebellum, Climbing fibers, Microcirculation, Parallel fibers, Scanning laser-Doppler flowmetry

ID: 201453679