Vestibular Modulation of Sympathetic Nerve Activity to Muscle and Skin in Humans

被引:27
|
作者
Hammam, Elie [1 ]
Macefield, Vaughan G. [1 ,2 ,3 ]
机构
[1] Western Sydney Univ, Sch Med, Sydney, NSW, Australia
[2] Neurosci Res Australia, Sydney, NSW, Australia
[3] Mohammed Bin Rashid Univ Med & Hlth Sci, Dubai, U Arab Emirates
来源
FRONTIERS IN NEUROLOGY | 2017年 / 8卷
基金
澳大利亚研究理事会;
关键词
galvanic vestibular stimulation; linear acceleration; muscle sympathetic nerve activity; skin sympathetic nerve activity; vestibular system; vestibulosympathetic reflexes; FREQUENCY PHYSIOLOGICAL ACTIVATION; ROSTRAL VENTROLATERAL MEDULLA; VERTICAL AXIS ROTATION; LIMB BLOOD-FLOW; LINEAR ACCELERATION; VESTIBULOSYMPATHETIC REFLEX; SQUIRREL-MONKEY; CARDIOVASCULAR FUNCTION; AUTONOMIC REGULATION; CONSCIOUS CATS;
D O I
10.3389/fneur.2017.00334
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
We review the existence of vestibulosympathetic reflexes in humans. While several methods to activate the human vestibular apparatus have been used, galvanic vestibular stimulation (GVS) is a means of selectively modulating vestibular afferent activity via electrodes over the mastoid processes, causing robust vestibular illusions of side-to-side movement. Sinusoidal GVS (sGVS) causes partial entrainment of sympathetic outflow to muscle and skin. Modulation of muscle sympathetic nerve activity (MSNA) from vestibular inputs competes with baroreceptor inputs, with stronger temporal coupling to the vestibular stimulus being observed at frequencies remote from the cardiac frequency; "super entrainment" was observed in some individuals. Low-frequency (<0.2 Hz) sGVS revealed two peaks of modulation per cycle, with bilateral recordings of MSNA or skin sympathetic nerve activity, providing evidence of lateralization of sympathetic outflow during vestibular stimulation. However, it should be noted that GVS influences the firing of afferents from the entire vestibular apparatus, including the semicircular canals. To identify the specific source of vestibular input responsible for the generation of vestibulosympathetic reflexes, we used low-frequency (<0.2 Hz) sinusoidal linear acceleration of seated or supine subjects to, respectively, target the utricular or saccular components of the otoliths. While others had discounted the semicircular canals, we showed that the contributions of the utricle and saccule to the vestibular modulation of MSNA are very similar. Moreover, that modulation of MSNA occurs at accelerations well below levels at which subjects are able to perceive any motion indicates that, like vestibulospinal control of posture, the vestibular system contributes to the control of blood pressure through potent reflexes in humans.
引用
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页数:14
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