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不同线性加速度诱发的人体眼球反旋转

Human ocular counterrolling induced by varying linear accelerations.

作者信息

Lichtenberg B K, Young L R, Arrott A P

出版信息

Exp Brain Res. 1982;48(1):127-36. doi: 10.1007/BF00239580.

Abstract

Ocular counterrolling (OCR) has previously been studied using static head tilt or continuous rotation about the line of sight as a stimulus to the otolith organs. This study presents the first measurements of OCR in humans induced by linear accelerations. Dynamic measurements of the response to lateral linear acceleration indicate the eye movements to be on the order of 2 degrees for 0.2 g peak acceleration, 0.2 Hz sinusoidal acceleration. These values are consistent with static OCR studies. The dynamics of the response are similar to a low order linear system with a dominant time constant of 0.33 s. A previous model predicts a time constant of 0.32 s. Sinusoidal oscillation at 0.2, 0.4, and 1.0 Hz with a 0.2 g peak acceleration showed good agreement with the model in both gain and phase. The question of amplitude linearity remains unsettled. This otolithocular reflex, over short periods at least, appears to be stationary in the statistical sense.

摘要

以往对眼反向转动(OCR)的研究采用静态头部倾斜或绕视线连续旋转作为对耳石器官的刺激。本研究首次测量了由线性加速度诱发的人体OCR。对横向线性加速度响应的动态测量表明,对于0.2g峰值加速度、0.2Hz正弦加速度,眼球运动约为2度。这些值与静态OCR研究结果一致。响应的动力学类似于一个主导时间常数为0.33秒的低阶线性系统。先前的一个模型预测时间常数为0.32秒。在0.2g峰值加速度下,0.2、0.4和1.0Hz的正弦振荡在增益和相位方面均与该模型高度吻合。振幅线性的问题仍未解决。至少在短时间内,这种耳石眼反射在统计学意义上似乎是稳定的。

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