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首页> 外文期刊>The International Journal of Aerospace Psychology >Visual Improvements after Perceptual Learning Transfer from Normoxia to Hypoxia
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Visual Improvements after Perceptual Learning Transfer from Normoxia to Hypoxia

机译:视觉改进后知觉学习从Normoxia缺氧

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摘要

Objective: This study aimed to evaluate vision improvement in hypoxia following normoxic perceptual learning. Background: Visual functions are important for flight safety. However, the potential of perceptual learning to compensate for hypoxic vision damage is unclear. Method: Seven observers enrolled in this study and were exposed to a hypoxic (11.5% O_2) and a mesopic (3 cd/m2) environment. Visual acuity (VA) and contrast sensitivity function (CSF) were evaluated in normoxia and hypoxia before and after the 8 daily training sessions. All observers trained in a monocular sine-wave grating detection task near their individual cutoff spatial frequencies while breathing normoxic gas. Results: The contrast sensitivity (CS) at the trained spatial frequency, the area under the log CSF (AULCSF) and VA decreased in a hypoxic environment. Additionally, all visual performances (i.e., CS, AULCSF and VA), regardless of whether they were measured in the normoxic or hypoxic condition, improved following normoxic perceptual learning. The degree of visual improvement did not differ between normoxia and hypoxia, indicating that visual improvement is completely transferable from normoxia to hypoxia. Conclusions: Preliminary evidence suggests that visual improvement remains even under environmental changes, and perceptual learning may be a noninvasive way to compensate for vision decreases in hypoxia.
机译:摘要目的:本研究旨在评估视觉改善缺氧常氧知觉学习。对飞行安全很重要。潜在的知觉学习来弥补缺氧视力损害尚不清楚。七个观察员参加本研究,暴露于低氧(11.5%提取成分)和中光(3cd / m2)环境。对比敏感度函数(CSF)评价normoxia和缺氧后8日常训练。观察家们训练有素的单眼正弦波个人附近光栅检测任务截止频率空间而呼吸常氧气体。在训练有素的空间频率(CS),该地区根据日志CSF (AULCSF)和VA在下降缺氧的环境。表演(即CS, AULCSF和VA),不管他们的测量常氧或缺氧状态,改善后常氧知觉学习。视觉改进没有差异normoxia和缺氧,表明视觉改进是完全转移normoxia缺氧。证据表明,视觉改进仍然存在即使在环境变化和感知学习可能是一种非侵入性的方式进行补偿缺氧的视力下降。

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