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脑血管副交感神经对静息脑血流量、自发性血管运动、自动调节、高碳酸血症性血管舒张和交感神经血管收缩的影响。

Influence of cerebrovascular parasympathetic nerves on resting cerebral blood flow, spontaneous vasomotion, autoregulation, hypercapnic vasodilation and sympathetic vasoconstriction.

作者信息

Morita Y, Hardebo J E, Bouskela E

机构信息

Department of Medical Cell Research, University of Lund, Sweden.

出版信息

J Auton Nerv Syst. 1994 Sep;49 Suppl:S9-14. doi: 10.1016/0165-1838(94)90079-5.

Abstract

Activation of perivascular parasympathetic nerves enhances cerebral blood flow. In the present experiments, functional aspects of this flow regulating capacity were investigated. It was found that parasympathetic nerve stimulation does not facilitate the normalization of the cerebral blood flow reduced by sympathetic stimulation. In contrast, activation of sympathetic nerves may contribute to a rapid normalization of the cerebral blood flow increased by parasympathetic stimulation. The lower limit of cerebral autoregulation is shifted towards higher blood pressures in parasympathetically denervated rats. Parasympathetic nerves do not influence hypercapnic cerebral vasodilatation, but CO2 influence the effect of parasympathetic stimulation on cerebral blood flow. We conclude that activity in parasympathetic nerves does not contribute to cerebral vasomotion.

摘要

血管周围副交感神经的激活可增强脑血流量。在本实验中,对这种血流调节能力的功能方面进行了研究。结果发现,副交感神经刺激并不能促进因交感神经刺激而降低的脑血流量恢复正常。相反,交感神经的激活可能有助于使因副交感神经刺激而增加的脑血流量迅速恢复正常。在去副交感神经的大鼠中,脑自动调节的下限向更高血压偏移。副交感神经不影响高碳酸血症性脑血管舒张,但二氧化碳会影响副交感神经刺激对脑血流量的作用。我们得出结论,副交感神经的活动对脑血管运动没有贡献。

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