Literature DB >> 6777068

Effects of cholinergic nerves on cerebral blood flow in cats.

D W Busija, D D Heistad.   

Abstract

We studied the effects of parasympathetic nerves on cerebral blood flow (CBF). The greater superficial petrosal nerve, which apparently supplies cholinergic fibers to cerebral vessels and the lacrimal gland, was sectioned on one side at the internal auditory meatus in anesthetized cats. CBF was measured with 15-microns microspheres. Section of the petrosal nerve did not alter resting CBF. In addition, electrical stimulation of the distal cut end of the petrosal nerve had no effect on total CBF. In one area of the brain, the caudate nucleus, stimulation increased blood flow from 29 +/- 2 to 36 +/- 2 (mean +/- SE) ml/min per 100 g. Lacrimal gland blood flow increased from 42 +/- 7 to 198 +/- 32 ml/min per 100 g during petrosal stimulation, which indicates that the stimulus was potent. In the same experiments, CBF increased 3- to 4-fold during hypercapnia; thus, cerebral vessels were responsive to another dilator stimulus. In other experiments, petrosal nerve section did not alter the response of cerebral vessels to hypercapnia (PCO2 > 50 mm Hg) or hypoxia (PO2 < 34 mm Hg). We conclude: (1) there is little or no resting vasodilator tone provided to cerebral vessels by the petrosal nerve; (2) petrosal nerve stimulation has a major effect on blood flow to the lacrimal gland but does not increase CBF; and (3) petrosal nerve section has little effect on the response of cerebral vessels to hypercapnia or hypoxia.

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Year:  1981        PMID: 6777068     DOI: 10.1161/01.res.48.1.62

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  15 in total

1.  Reactive changes in adrenal innervation of cerebral arteries in conditions of the activation of cholinergic mechanisms.

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2.  Evidence for in vivo cerebrovascular neurogenic vasodilatation in the rat.

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3.  Cholinergic control of the cerebral vasculature in humans.

Authors:  J W Hamner; Can Ozan Tan; Yu-Chieh Tzeng; J Andrew Taylor
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4.  Trigeminovascular fibers increase blood flow in cortical gray matter by axon reflex-like mechanisms during acute severe hypertension or seizures.

Authors:  D E Sakas; M A Moskowitz; E P Wei; H A Kontos; M Kano; C S Ogilvy
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5.  The effect of changes in cardiac output on middle cerebral artery mean blood velocity at rest and during exercise.

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6.  Mechanisms of the cerebrovascular response to apnoea in humans.

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Review 7.  Integrative physiological and computational approaches to understand autonomic control of cerebral autoregulation.

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8.  Vasoactive-intestinal-polypeptide (VIP)-like immunoreactive cells in the skull base of rats. A combined study using acetylcholinesterase histochemistry.

Authors:  H Hara; S Kobayashi
Journal:  Histochemistry       Date:  1987

9.  Neonatal cerebral blood flow velocity responses to changes in posture.

Authors:  M Y Anthony; D H Evans; M I Levene
Journal:  Arch Dis Child       Date:  1993-09       Impact factor: 3.791

10.  Role of endothelium in hypoxic contraction of canine basilar artery.

Authors:  D A Elliott; B Y Ong; J E Bruni; D Bose
Journal:  Br J Pharmacol       Date:  1989-04       Impact factor: 8.739

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