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头低位倾斜时前庭交感反射对肌肉交感神经输出的影响。

Influence of vestibulo-sympathetic reflex on muscle sympathetic outflow during head-down tilt.

作者信息

Kawanokuchi J, Fu Q, Cui J, Niimi Y, Kamiya A, Michikami D, Iwase S, Mano T, Suzumura A

机构信息

Department of Neuroimmunology, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Japan.

出版信息

Environ Med. 2001 Dec;45(2):66-8.

Abstract

To clarify the response of muscle sympathetic nerve activity (MSNA) to static stimulation of otolith organs in a craniocaudal direction (+Gz) in humans, we examined the effect of otolith stimulation on MSNA without changing the effect of cardiopulmonary baroreceptors using a 6-8.5 degrees head-down tilt (HDT) and lower body negative pressure (LBNP) device. Before the study, we established that 6-8.5 degrees HDT with 10 mmHg LBNP caused a fluid shift to the degree that the thoracic impedance was the same as the supine position without LBNP. Subjects were young male volunteers aged 22.1 +/- 3.8 years who gave informed consent. MSNA was recorded from the tibial nerve by microneurography simultaneously with heart rate (ECG), thoracic fluid volume (impedance method), and blood pressure (tonometric method). During 6-8.5 degrees HDT with 10 mmHg LBNP, MSNA was suppressed slightly without significantly changing heart rate, thoracic impedance, or mean arterial blood pressure. The results suggest that the sympathosuppression was related not to the result of cardiopulmonary [correction of cardioplumonary] loading but to the -Gz change (caudocranial direction [correction of dirction]) of 0.1 G. It is estimated that the vestibulo-sympathetic reflex may suppress sympathetic outflow to muscles in humans.

摘要

为了阐明人体肌肉交感神经活动(MSNA)对头尾方向(+Gz)耳石器官静态刺激的反应,我们使用6 - 8.5度头低位倾斜(HDT)和下体负压(LBNP)装置,在不改变心肺压力感受器作用的情况下,研究了耳石刺激对MSNA的影响。在研究前,我们确定6 - 8.5度HDT加10 mmHg LBNP引起的体液转移程度,使得胸部阻抗与无LBNP的仰卧位相同。受试者为22.1±3.8岁的年轻男性志愿者,均签署了知情同意书。通过微神经ography从胫神经记录MSNA,同时记录心率(心电图)、胸液量(阻抗法)和血压(压力测量法)。在6 - 8.5度HDT加10 mmHg LBNP期间,MSNA略有抑制,而心率、胸部阻抗或平均动脉血压无显著变化。结果表明,交感神经抑制与心肺负荷的结果无关,而是与0.1 G的 -Gz变化(头尾方向)有关。据估计,前庭 - 交感神经反射可能会抑制人体肌肉的交感神经输出。

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