对比敏感度和眼微颤作为适应和再适应的标志,在模型实验中研究重力变化的影响

I. Shoshina, I. Zelenskaya, M. Bekreneva, S. Lyapunov, I. Lyapunov, D. Kotova, E. Tomilovskaya
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引用次数: 0

摘要

视觉感知在为大脑提供决策、构建世界图景和适应不断变化的环境条件所需的信息方面起着至关重要的作用。在模拟失重对人体影响的“干”浸泡条件下,研究了变化环境条件下的对比敏感度和震颤眼动。研究涉及10名志愿者(平均年龄30.8±4.6岁)。用视觉对比法记录视觉系统的对比灵敏度。我们提出了空间频率为0.4的Gabor元素;0.8;1.0;3.0;6.0和10.0周期/度。利用提供高频视频记录的光学系统记录眼球微动参数,即眼球震颤振荡的幅度和频率。测量在浸泡浴的前一天、干浸泡的第1、3、5和7天以及浸泡完成后的第二天进行。对比敏感度在低、高空间频率范围内的变化,以及眼微运动幅度的变化,已经确定。今天获得的数据是在不断变化的环境条件下寻找客观评估功能状态方法的新步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CONTRAST SENSITIVITY AND EYE MICROTREMOR AS MARKERS OF ADAPTATION AND READAPTATION IN A MODEL EXPERIMENT TO STUDY THE INFLUENCE OF GRAVITY CHANGES
Visual perception plays a crucial role in providing the brain with the information it needs to make decisions, build a picture of the world, and adapt to changing environmental conditions. Under conditions of "dry" immersion, which simulates the effects of weightlessness on the human body, contrast sensitivity and tremor eye movements were studied under changing environmental conditions. The study involved 10 volunteers (mean age 30.8±4.6 years). The contrast sensitivity of the visual system was recorded using the method of visocontrastometry. We presented the Gabor elements with a spatial frequency: 0.4; 0.8; 1.0; 3.0; 6.0 and 10.0 cycle/deg. The parameters of eye micromovements, i.e., the amplitude and frequency of eye tremor oscillations, were recorded using an optical system providing high-frequency video recording. The measurements were carried out the day before immersion in the immersion bath, on days 1, 3, 5, and 7 of “dry” immersion, as well as the next day after its completion. A change in contrast sensitivity in the range of low and high spatial frequencies, as well as in the amplitude of eye micromovements, was established. The data obtained today are a new step in the search for methods for an objective assessment of the functional state under changing environmental conditions.
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