Frontiers in Neuroscience (May 2023)

Influence of hypobaric hypoxic conditions on ocular structure and biological function at high attitudes: a narrative review

  • Yuchen Wang,
  • Yuchen Wang,
  • Xinli Yu,
  • Ziyuan Liu,
  • Ziyuan Liu,
  • Zhongsheng Lv,
  • Zhongsheng Lv,
  • Huaqin Xia,
  • Huaqin Xia,
  • Yiren Wang,
  • Yiren Wang,
  • Jiaxi Li,
  • Jiaxi Li,
  • Xuemin Li,
  • Xuemin Li

DOI
https://doi.org/10.3389/fnins.2023.1149664
Journal volume & issue
Vol. 17

Abstract

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BackgroundWith the development of science and technology, high-altitude environments, involving aviation, aerospace, and mountainous regions, have become the main areas for human exploration, while such complex environments can lead to rapid decreases in air and oxygen pressure. Although modern aircrafts have pressurized cabins and support equipment that allow passengers and crew to breathe normally, flight crew still face repeated exposure to hypobaric and hypoxic conditions. The eye is a sensory organ of the visual system that responds to light and oxygen plays a key role in the maintenance of normal visual function. Acute hypoxia changes ocular structure and function, such as the blood flow rate, and can cause retinal ischemia.MethodsWe reviewed researches, and summarized them briefly in a review.ResultsThe acute hypobaric hypoxia affects corneal, anterior chamber angle and depth, pupils, crystal lens, vitreous body, and retina in structure; moreover, the acute hypoxia does obvious effect on visual function; for example, vision, intraocular pressure, oculometric features and dynamic visual performance, visual field, contrast sensitivity, and color perception.ConclusionWe summarized the changes in the physiological structure and function of the eye in hypoxic conditions and to provide a biological basis for the response of the human eye at high-altitude.

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