Intraocular Pressure during Spaceflight and Risk of Glaucomatous Damage in Prolonged Microgravity

Mouayad Masalkhi, Joshua Ong, Ethan Waisberg, John Berdahl, Andrew G. Lee
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引用次数: 1

Abstract

Microgravity introduces diverse pathological and various physiological changes to the human body, including intraocular pressure. Astronauts may develop a constellation of symptoms and signs including optic disc edema, choroidal folds, and a hyperopic shift from the flattening of the globe. These ocular findings have been collectively termed spaceflight-associated neuro-ocular syndrome (SANS). SANS is a condition that is unique to long-duration spaceflight. The precise pathogenesis of SANS remains ill-defined, but several hypotheses have been proposed that may be influenced by intraocular pressure. Countermeasures for SANS research also include techniques that impact intraocular pressure. In this article, we discuss intraocular pressure during spaceflight, the translaminar pressure gradient, SANS and potential SANS countermeasures, and the potential for glaucomatous damage during spaceflight.
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太空飞行期间的眼压与长时间微重力下青光眼损伤的风险
微重力会给人体带来各种病理和生理变化,包括眼压。宇航员可能会出现一系列症状和体征,包括视盘水肿、脉络膜皱褶和由地球变平引起的远视移位。这些眼部的发现被统称为航天相关的神经眼综合征(SANS)。SANS是长时间太空飞行所特有的一种情况。SANS的确切发病机制仍不明确,但提出了几个可能受眼压影响的假设。SANS研究的对策还包括影响眼压的技术。在本文中,我们讨论了航天飞行中的眼压,跨层流压力梯度,SANS和潜在的SANS对策,以及在航天飞行中青光眼损伤的可能性。
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