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重力惯性力水平和头部运动对旋转后眼球震颤及旋转后错觉的影响。

The effects of gravitoinertial force level and head movements on post-rotational nystagmus and illusory after-rotation.

作者信息

DiZio P, Lackner J R

机构信息

Ashton Graybiel Spatial Orientation Laboratory, Brandeis University, Waltham, MA 02254.

出版信息

Exp Brain Res. 1988;70(3):485-95. doi: 10.1007/BF00247597.

Abstract

The effect of Coriolis, cross-coupled stimulation on the vestibuloocular reflex and the elicitation of motion sickness depends on background gravitoinertial force level (DiZio et al. 1986, 1987; Graybiel et al. 1977; Lackner and Graybiel 1984, 1986). We have explored whether this response dependency is related to the unusual patterns of sensorimotor activity present during exposure to non-terrestrial gravitoinertial force levels, to alterations in the encoding of head movements in different gravitoinertial force environments, or to some combination thereof. Blindfolded subjects were exposed to sudden stops after constant velocity, vertical z-axis rotation, sometimes with and sometimes without post-rotational head movements, in the 0 G, 1 G, and 1.8 G force phases of parabolic flight. After sudden stops without head movements, the time constant of decay of post-rotational nystagmus was significantly lower in 0 G than in 1 G and lower to a smaller extent in 1.8 G. Post-rotational head movements decreased the decay time constants in 1 G and in 1.8 G, but not in free fall. The same pattern emerged for the duration of illusory after-rotation. Systematic changes were not found in the peak slow phase velocity of nystagmus. These results suggest that tonic levels of otolithic and somatosensory activity in combination with canalicular, cervical, and motor activity regulate the velocity storage mechanism of the horizontal vestibuloocular reflex (Cohen et al. 1977; Raphan et al. 1979) and sensations of after-rotation. These same factors are likely to be important etiological elements in space motion sickness.

摘要

科里奥利力、交叉耦合刺激对前庭眼反射的影响以及晕动病的诱发取决于背景重力惯性力水平(迪齐奥等人,1986年、1987年;格雷比尔等人,1977年;拉克纳和格雷比尔,1984年、1986年)。我们探究了这种反应依赖性是否与暴露于非地球重力惯性力水平期间出现的不寻常感觉运动活动模式有关,与不同重力惯性力环境中头部运动编码的改变有关,或者与两者的某种组合有关。在抛物线飞行的0G、1G和1.8G力阶段,蒙眼受试者在匀速垂直z轴旋转后突然停止,有时有旋转后头部运动,有时没有。在没有头部运动的突然停止后,旋转后眼震衰减的时间常数在0G时显著低于1G,在1.8G时降低程度较小。旋转后头部运动在1G和1.8G时缩短了衰减时间常数,但在自由落体时没有。旋转后错觉的持续时间也出现了相同的模式。在眼震的峰值慢相速度方面未发现系统性变化。这些结果表明,耳石和体感活动的紧张性水平与半规管、颈部和运动活动相结合,调节水平前庭眼反射的速度存储机制(科恩等人,1977年;拉凡等人,1979年)以及旋转后感觉。这些相同的因素可能是太空晕动病的重要病因要素。

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