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在3 Gz离心刺激期间,坐在旋转支撑系统中的人类受试者的前庭眼反射。

Vestibulo-ocular response of human subjects seated in a pivoting support system during 3 Gz centrifuge stimulation.

作者信息

McGrath B J, Guedry F E, Oman C M, Rupert A H

机构信息

Man Vehicle Laboratory, Massachusetts Institute of Technology, Cambridge, USA.

出版信息

J Vestib Res. 1995 Sep-Oct;5(5):331-47.

PMID:8528475
Abstract

The vestibulo-ocular reflex (VOR) and spatial orientation perceptions were recorded in 15 subjects during 3 Gz centrifuge runs. These data were obtained to study two issues: (1) to gain insight into reports of asymmetrical disorientation and disturbance during acceleration and deceleration of centrifuge runs like those used to train pilots on the procedures to counteract G-induced loss of consciousness (G-LOC); (2) to study the effects of sustained vertical linear acceleration on the vestibular system. The centrifuge angular velocity profile consisted of a 19 s angular acceleration to 3 Gz that was sustained for 5 min during a period of constant angular velocity, and a 19 s deceleration to 1 Gz. The runs were repeated three times with the subject facing the motion and three times with the subject's back to the motion. The VOR and spatial orientation perceptions from the eight subjects who completed all six runs were analyzed. The total VOR response during acceleration and deceleration was composed of interacting angular (AVOR) and linear components (LVOR). Asymmetries in pitch orientation perception between centrifuge acceleration and decleration were not matched by asymmetries in the total VOR slow phase velocity. During the constant velocity high-G phase of the run, sustained up-beating LVOR (Lz nystagmus) was present in 14 of the 15 subjects. Significant individual differences in Lz nystagmus were found, but the maximum Lz response in our 15 subjects was probably of insufficient magnitude to degrade visual scan of cockpit instruments. Mean magnitudes ranged from 0 to 10 deg/s at 90 s from onset of centrifuge run.

摘要

在15名受试者进行3 Gz离心运行期间记录了前庭眼反射(VOR)和空间定向感知。获取这些数据是为了研究两个问题:(1)深入了解在离心运行加速和减速过程中不对称性定向障碍和干扰的报告,这种情况类似于用于训练飞行员应对G诱发意识丧失(G-LOC)程序时的情况;(2)研究持续垂直线性加速度对前庭系统的影响。离心机角速度曲线包括19秒的角加速度至3 Gz,在恒定角速度期间持续5分钟,然后19秒减速至1 Gz。受试者面向运动方向进行了三次运行,背向运动方向也进行了三次运行。对完成所有六次运行的八名受试者的VOR和空间定向感知进行了分析。加速和减速期间的总VOR反应由相互作用的角向(AVOR)和线性成分(LVOR)组成。离心加速和减速之间俯仰定向感知的不对称性与总VOR慢相速度的不对称性不匹配。在运行的恒速高G阶段,15名受试者中有14名出现持续的向上跳动LVOR(Lz眼震)。发现Lz眼震存在显著的个体差异,但我们15名受试者中的最大Lz反应幅度可能不足以降低对驾驶舱仪表的视觉扫描。从离心机运行开始90秒时,平均幅度范围为0至10度/秒。

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