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高速人工重力的感觉运动方面:I. 前庭适应中的感觉冲突。

Sensorimotor aspects of high-speed artificial gravity: I. Sensory conflict in vestibular adaptation.

作者信息

Brown Erika L, Hecht Heiko, Young Laurence R

机构信息

Man-Vehicle Lab, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

J Vestib Res. 2002;12(5-6):271-82.

Abstract

Short-radius centrifugation offers a promising and affordable countermeasure to the adverse effects of prolonged weightlessness. However, head movements made in a fast rotating environment elicit Coriolis effects, which seriously compromise sensory and motor processes. We found that participants can adapt to these Coriolis effects when exposed intermittently to high rotation rates and, at the same time, can maintain their perceptual-motor coordination in stationary environments. In this paper, we explore the role of inter-sensory conflict in this adaptation process. Different measures (vertical nystagmus, illusory body tilt, motion sickness) react differently to visual-vestibular conflict and adapt differently. In particular, proprioceptive-vestibular conflict sufficed to adapt subjective parameters and the time constant of nystagmus decay, while retinal slip was required for VOR gain adaptation. A simple correlation between the strength of intersensory conflict and the efficacy of adaptation fails to explain the data. Implications of these findings, which differ from existing data for low rotation rates, are discussed.

摘要

短半径离心法为长期失重的不良影响提供了一种有前景且经济实惠的应对措施。然而,在快速旋转环境中进行的头部运动会引发科里奥利效应,这严重损害了感觉和运动过程。我们发现,参与者在间歇性暴露于高旋转速率时能够适应这些科里奥利效应,同时在静止环境中能够保持其感知运动协调能力。在本文中,我们探讨了跨感觉冲突在这一适应过程中的作用。不同的测量方法(垂直眼震、虚幻身体倾斜、晕动病)对视觉 - 前庭冲突的反应不同,适应方式也不同。特别是,本体感觉 - 前庭冲突足以使主观参数和眼震衰减的时间常数产生适应,而视动反射增益适应则需要视网膜滑动。跨感觉冲突强度与适应效果之间的简单相关性无法解释这些数据。本文讨论了这些与低旋转速率下现有数据不同的研究结果的意义。

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