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Central Adaptation to Repeated Galvanic Vestibular Stimulation: Implications for Pre-Flight Astronaut Training

机译:中央适应反复电前庭刺激:对飞行前宇航员训练的影响。

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摘要

Healthy subjects (N = 10) were exposed to 10-min cumulative pseudorandom bilateral bipolar Galvanic vestibular stimulation (GVS) on a weekly basis for 12 weeks (120 min total exposure). During each trial subjects performed computerized dynamic posturography and eye movements were measured using digital video-oculography. Follow up tests were conducted 6 weeks and 6 months after the 12-week adaptation period. Postural performance was significantly impaired during GVS at first exposure, but recovered to baseline over a period of 7–8 weeks (70–80 min GVS exposure). This postural recovery was maintained 6 months after adaptation. In contrast, the roll vestibulo-ocular reflex response to GVS was not attenuated by repeated exposure. This suggests that GVS adaptation did not occur at the vestibular end-organs or involve changes in low-level (brainstem-mediated) vestibulo-ocular or vestibulo-spinal reflexes. Faced with unreliable vestibular input, the cerebellum reweighted sensory input to emphasize veridical extra-vestibular information, such as somatosensation, vision and visceral stretch receptors, to regain postural function. After a period of recovery subjects exhibited dual adaption and the ability to rapidly switch between the perturbed (GVS) and natural vestibular state for up to 6 months.
机译:健康受试者(N = 10)每周接受10分钟的累积伪随机双侧双相电偶前庭刺激(GVS)暴露12周(总暴露120分钟)。在每个试验期间,受试者进行计算机动态姿势描记术,并使用数字视频眼动仪测量眼球运动。在适应期12周后的6周和6个月进行了随访测试。初次接触GVS期间,姿势表现明显受损,但经过7-8周(70-80分钟的GVS接触)恢复到基线水平。适应后6个月维持这种姿势恢复。相比之下,对GVS的翻滚前庭眼反射反应并未因反复暴露而减弱。这表明GVS适应性未发生在前庭终末器官或涉及低水平(脑干介导的)前庭眼或前庭-脊髓反射的变化。面对不可靠的前庭输入,小脑会重新加权感觉输入,以强调垂直的前庭外信息,例如躯体感觉,视觉和内脏拉伸受体,以恢复姿势功能。经过一段时间的恢复,受试者表现出双重适应能力,并且能够在长达6个月的扰动(GVS)和自然前庭状态之间快速切换。

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