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与航空相关的呼吸气体紊乱影响暗适应:重新评估。

Aviation-related respiratory gas disturbances affect dark adaptation: a reappraisal.

作者信息

Connolly Desmond M, Hosking Sarah L

机构信息

QinetiQ Centre for Human Sciences, Cody Technology Park, Ively Road, Farnborough, Hampshire GU14 0LX, UK.

出版信息

Vision Res. 2006 May;46(11):1784-93. doi: 10.1016/j.visres.2005.10.027. Epub 2005 Dec 20.

Abstract

This study examined the time course of early scotopic threshold sensitivity during dark adaptation under mild to moderate hypoxia, moderate hypocapnia and hyperoxia, measuring detection time displacement relative to normoxia. Cone rod inflection and early rod adaptation were highlighted using progressively dimmer green flash stimuli. Early scotopic sensitivity was significantly delayed by hypoxia and hastened by hypocapnia and hyperoxia. Effects of respiratory disturbance on dark adaptation include temporal shifts of early scotopic sensitivity while human rod photoreceptors appear functionally hypoxic when breathing air at one atmosphere. At night, supplementary oxygen may benefit aircrew visual sensitivity, even at ground level.

摘要

本研究检测了在轻度至中度低氧、中度低碳酸血症和高氧状态下暗适应期间早期暗视阈值敏感性的时间进程,测量相对于常氧状态下的检测时间位移。使用逐渐变暗的绿色闪光刺激突出视锥-视杆转折和早期视杆适应。低氧显著延迟早期暗视敏感性,而低碳酸血症和高氧则使其加快。呼吸紊乱对暗适应的影响包括早期暗视敏感性的时间偏移,而当人在一个大气压下呼吸空气时,视杆光感受器在功能上似乎处于低氧状态。在夜间,即使在地面水平,补充氧气也可能有益于机组人员的视觉敏感性。

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