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在不限制头部的单向平移全身振动期间的前庭眼反射特征。

Vestibulo-ocular reflex characteristics during unidirectional translational whole-body vibration without head restriction.

机构信息

Strategic Research Division, Toyota Central R&D Labs., Inc, Nagakute, Japan.

Department of Robotic Science and Technology, Chubu University College of Engineering, Kasugai, Japan.

出版信息

Ergonomics. 2020 Jan;63(1):91-100. doi: 10.1080/00140139.2019.1683616. Epub 2019 Nov 9.

Abstract

The vestibulo-ocular reflex (VOR) plays a crucial role in ocular stability. However, VOR characteristics under realistic whole-body vibration conditions, particularly without head restriction, remain unclear. The aim of this study was to characterise the VOR over a wide range of whole-body vibration frequencies (0.7-10 Hz), such as occur when driving a car. Eye and head movements were measured in response to unidirectional translational whole-body vibration that resembled actual vehicle vibrations. The VOR was then modelled by regressing eye velocity data on multiple head movement components. Results showed that the VOR was explained by angular velocity, linear acceleration, and linear jerk components of the head movements. Because the VOR in response to head linear-jerk components disrupted ocular stability in the current experimental setup, our results suggest that degraded vision in whole-body vibratory environments might be partially attributable to jerky head movements. The vestibulo-ocular reflex (VOR) during unidirectional translational whole-body vibration without head restriction was modelled using multiple head movement components, with the aim of characterising the VOR. Results showed that the VOR was explained by angular velocity, linear acceleration, and linear jerk components of head movements.

摘要

前庭眼反射(VOR)在眼球稳定性中起着至关重要的作用。然而,在现实的全身振动条件下,特别是在没有头部限制的情况下,VOR 的特征仍然不清楚。本研究的目的是描述 VOR 在广泛的全身振动频率(0.7-10 Hz)下的特征,例如在驾驶汽车时会出现的情况。眼睛和头部运动是在响应类似于实际车辆振动的单向平移全身振动时测量的。然后,通过对头运动的多个分量进行回归,对头速度数据进行建模,以模拟 VOR。结果表明,VOR 可以通过头部运动的角速度、线性加速度和线性急动度分量来解释。由于当前实验设置中对头部线性急动度分量的 VOR 会破坏眼球稳定性,因此我们的结果表明,在全身振动环境中视力下降可能部分归因于头部急动运动。在没有头部限制的单向平移全身振动期间,使用多个头部运动分量对前庭眼反射(VOR)进行建模,目的是描述 VOR。结果表明,VOR 可以通过头部运动的角速度、线性加速度和线性急动度分量来解释。

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