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首页> 外文期刊>Journal of vestibular research: equilibrium and orientation >Eye movements and motion perception during off-vertical axis rotation after spaceflight.
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Eye movements and motion perception during off-vertical axis rotation after spaceflight.

机译:航天飞行后垂直轴旋转期间的眼睛运动和运动感知。

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Constant velocity off-vertical axis rotation (OVAR) provides dynamic linear acceleration stimuli that can be used to assess otolith function. Eight astronauts were rotated in darkness about their longitudinal axis 20° off vertical at low (0.125 Hz) and high (0.5 Hz) frequencies and their responses were compared before and after spaceflight. Eye movements were recorded using infrared videography and perceived motion was evaluated using a joystick with four degrees of freedom - pitch and roll tilt, front-back and lateral translation. Low-frequency OVAR generates tilt otolith-induced responses - modulation of ocular counter-roll and counter-pitch with perceived conical motion path - whereas high-frequency OVAR generates translational otolith-induced responses - modulation of horizontal and vergence slow phase velocity with perceived cylindrical motion path. While there were transient changes in the amplitude of the translational ocular responses on landing day, there were no major changes in the tilt ocular reflexes after adaptation to weightlessness. However, there was an increase in sensitivity to motion perception after spaceflight. Direct comparisons of pre- and postflight stimuli suggested that OVAR on landing day was less provocative of motion sickness than before spaceflight. These results confirm that some otolith reflexes elicited during passive motion may not be altered by short-duration spaceflight - or may readapt very quickly - and that the resolution of sensory conflict associated with postflight recovery involves higher-order neural processes.
机译:恒速离轴旋转(OVAR)提供了动态线性加速度刺激,可用于评估耳石功能。在低频率(0.125 Hz)和高频率(0.5 Hz)下,八名宇航员在黑暗中绕其纵轴偏离垂直方向旋转了20°,并比较了航天前后的反应。使用红外照相术记录眼睛的运动,并使用具有四个自由度的操纵杆(俯仰和侧倾,前后和横向平移)评估感知的运动。低频OVAR产生倾斜的耳石引起的响应-通过感知的圆锥运动路径调制眼的反向滚动和反俯仰-而高频OVAR产生平移的耳石引起的响应-感知圆柱体的水平和渐慢慢相速度的调制运动路径。虽然着陆日平移眼反应幅度有短暂变化,但适应失重后倾斜眼反射没有重大变化。但是,太空飞行后对运动感知的敏感性有所提高。飞行前和飞行后刺激的直接比较表明,着陆日的OVAR较之飞行前,对晕动病的刺激性较小。这些结果证实,在被动运动中引起的一些耳石反射可能不会因短时航天而改变-或可能很快重新适应-并且与飞行后恢复相关的感觉冲突的解决涉及高阶神经过程。

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