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响应前庭刺激的交感神经活动模式。

Patterning of sympathetic nerve activity in response to vestibular stimulation.

作者信息

Kerman I A, McAllen R M, Yates B J

机构信息

Department of Neuroscience, University of Pittsburgh, Pittsburgh, PA 15213, USA.

出版信息

Brain Res Bull. 2000 Sep 1;53(1):11-6. doi: 10.1016/s0361-9230(00)00303-8.

Abstract

Growing evidence suggests a role for the vestibular system in regulation of autonomic outflow during postural adjustments. In the present paper we review evidence for the patterning of sympathetic nerve activity elicited by vestibular stimulation. In response to electrical activation of vestibular afferents, firing of sympathetic nerves located throughout the body is altered. However, activity of the renal nerve is most sensitive to vestibular inputs. In contrast, high-intensity simultaneous activation of cutaneous and muscle inputs elicits equivalent changes in firing of the renal, superior mesenteric and lumbar colonic nerves. Responses of muscle vasoconstrictor (MVC) efferents to vestibular stimulation are either inhibitory (Type I) or are comprised of a combination of excitation and inhibition (Type II). Interestingly, single MVC units located in the hindlimb exhibited predominantly Type I responses while those located in the forelimb and face exhibited Type II responses. Furthermore, brachial and femoral arterial blood flows were dissociated in response to vestibular stimulation, such that brachial vascular resistance increased while femoral resistance decreased. These studies demonstrate that vestibulosympathetic reflexes are patterned according to both the anatomical location and innervation target of a particular sympathetic nerve, and can lead to distinct changes in local blood flow.

摘要

越来越多的证据表明,前庭系统在姿势调整过程中对自主神经输出的调节起作用。在本文中,我们综述了前庭刺激引起的交感神经活动模式的证据。响应前庭传入神经的电激活,全身交感神经的放电会发生改变。然而,肾神经的活动对前庭输入最为敏感。相比之下,皮肤和肌肉输入的高强度同时激活会引起肾神经、肠系膜上神经和腰结肠神经放电的同等变化。肌肉血管收缩(MVC)传出神经对前庭刺激的反应要么是抑制性的(I型),要么是兴奋和抑制的组合(II型)。有趣的是,位于后肢的单个MVC单位主要表现出I型反应,而位于前肢和面部的单位则表现出II型反应。此外,响应前庭刺激时,肱动脉和股动脉血流出现分离,即肱血管阻力增加而股阻力降低。这些研究表明,前庭交感反射根据特定交感神经的解剖位置和支配目标进行模式化,并可导致局部血流的明显变化。

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