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Publication : nNOS-expressing interneurons control basal and behaviorally evoked arterial dilation in somatosensory cortex of mice.

First Author  Echagarruga CT Year  2020
Journal  Elife Volume  9
PubMed ID  33016877 Mgi Jnum  J:298689
Mgi Id  MGI:6477118 Doi  10.7554/eLife.60533
Citation  Echagarruga CT, et al. (2020) nNOS-expressing interneurons control basal and behaviorally evoked arterial dilation in somatosensory cortex of mice. Elife 9:e60533
abstractText  Cortical neural activity is coupled to local arterial diameter and blood flow. However, which neurons control the dynamics of cerebral arteries is not well understood. We dissected the cellular mechanisms controlling the basal diameter and evoked dilation in cortical arteries in awake, head-fixed mice. Locomotion drove robust arterial dilation, increases in gamma band power in the local field potential (LFP), and increases calcium signals in pyramidal and neuronal nitric oxide synthase (nNOS)-expressing neurons. Chemogenetic or pharmocological modulation of overall neural activity up or down caused corresponding increases or decreases in basal arterial diameter. Modulation of pyramidal neuron activity alone had little effect on basal or evoked arterial dilation, despite pronounced changes in the LFP. Modulation of the activity of nNOS-expressing neurons drove changes in the basal and evoked arterial diameter without corresponding changes in population neural activity.
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