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重力对中枢神经系统功能的影响。

Effects of gravity on the functions of the central nervous system.

作者信息

Adey W R

机构信息

Space Biology Laboratory, Brain Research Institute, University of California at Los Angeles, Los Angeles, California, USA.

出版信息

Life Sci Space Res. 1964;2:267-86.

Abstract

The sensitivity of the mammalian central nervous system to gravitational influences involves both direct and indirect factors. Gradual loss of cerebral circulation with increasing acceleration beyond 5 G has been shown to evoke changes in patterns of brain electrical activity, with epileptiform discharges triggered primarily in the hippocampal system of the temporal lobe, and spreading into other brain systems. The relationship of these structures to judgment and discriminative functions is discussed. Complete loss of cerebral circulation is associated with electrical silence in the brain. The possible effects of weightlessness on intracranial fluid distribution are reviewed. Tests of vibrational stimuli in the monkey have disclosed "driving" of electrical brain rhythms at the shaking frequency, particularly in the range from 11 to 15 cycles per second. These effects are unrelated to photic stimulation, and are abolished by anesthesia or death. Tests of discriminative capability at frequencies producing maximum driving have shown increased response latencies and increased errors. The neurophysiological basis for adaptive phenomena in recurrent vestibular stimulation has been found to reside partly in the vestibular nuclei of the medulla, and not to require integrity of connections with higher vestibular centers. The potentiation of responsiveness to vestibular stimulation in the weightless state has been shown to have a basis in the exaggerated responsiveness of medullary vestibular centers following loss of proprioceptive influxes from the spinal cord. The possible contribution of weightlessness to anomalous psychophysiological functions is reviewed. This area presents a major challenge in experimental design, and may require evaluation of such phenomena as distortion of the body image, modified sleep patterns and changes in optimal sleep-work cycles.

摘要

哺乳动物中枢神经系统对重力影响的敏感性涉及直接和间接因素。研究表明,随着加速度超过5G并逐渐增加,脑循环会逐渐丧失,从而引发脑电活动模式的变化,主要在颞叶海马系统触发癫痫样放电,并扩散到其他脑系统。文中讨论了这些结构与判断和辨别功能的关系。脑循环完全丧失与大脑电静息有关。文中回顾了失重对颅内液体分布的可能影响。对猴子进行的振动刺激测试揭示了以摇晃频率“驱动”脑电节律,特别是在每秒11至15次循环的范围内。这些效应与光刺激无关,并且会被麻醉或死亡消除。在产生最大驱动的频率下进行的辨别能力测试显示反应潜伏期增加和错误增多。已发现反复前庭刺激中适应性现象的神经生理基础部分存在于延髓的前庭核中,并且不需要与更高前庭中枢的连接完整。失重状态下对前庭刺激反应性的增强已被证明是由于脊髓本体感觉输入丧失后延髓前庭中枢的反应性过度增强。文中回顾了失重对异常心理生理功能的可能影响。这一领域在实验设计方面提出了重大挑战,可能需要评估诸如身体形象扭曲、睡眠模式改变和最佳睡眠 - 工作周期变化等现象。

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