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Postural control in a simulated saturation dive to 240 msw.

机译:在模拟饱和下潜的姿势控制可降至240兆瓦。

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INTRODUCTION: There is evidence that increased ambient pressure causes an increase in postural sway. This article documents postural sway at pressures not previously studied and discusses possible mechanisms. METHODS: Eight subjects participated in a dry chamber dive to 240 msw (2.5 MPa) saturation pressure. Two subjects were excluded due to unilateral caloric weakness before the dive. Postural sway was measured on a force platform. The path length described by the center of pressure while standing quietly for 60 seconds was used as test variable. Tests were repeated 38 times in four conditions: with eyes open or closed, while standing on bare platform or on a foam rubber mat. RESULTS: Upon reaching 240 msw, one subject reported vertigo, disequilibrium and nausea, and in all subjects, mean postural sway increased 26% on bare platform with eyes open (p < 0.05) compared to predive values. There was no significant improvement in postural sway during the bottom phase, but a trend was seen toward improvement when the subjects were standing with eyes closed on foam rubber (p = 0.1). Postural sway returned to predive values during the decompression phase. DISCUSSION: Postural imbalance during deep diving has been explained previously as HPNS possibly including a specific effect on the vestibulo-ocular reflex. Although vertigo and imbalance are known to be related to compression rate, this study shows that there remains a measurable increase in postural sway throughout the bottom phase at 240 msw, which seems to be related to absolute pressure.
机译:简介:有证据表明,环境压力升高会导致姿势摇摆增加。本文记录了以前没有研究过的压力下的姿势摇摆,并讨论了可能的机制。方法:八名受试者参加了干燥室潜水至240兆瓦(2.5兆帕)的饱和压力。潜水前,由于单方面的热量虚弱,排除了两名受试者。在力平台上测量姿势摇摆。静置60秒时以压力中心描述的路径长度用作测试变量。在以下四个条件下重复测试38次:睁开或闭上眼睛,站在裸露的平台或泡沫橡胶垫上。结果:在达到240兆瓦时时,一名受试者报告了眩晕,不平衡和恶心,并且在所有受试者中,裸眼平台上睁开眼睛的平均姿势摆幅均比捕食值高26%(p <0.05)。在底部阶段,姿势摇摆没有显着改善,但是当受试者闭着眼睛站在泡沫橡胶上时,观察到有改善的趋势(p = 0.1)。在减压阶段,姿势摇摆恢复到先前的值。讨论:以前曾解释过深潜水时的姿势不平衡,因为HPNS可能包括对前庭眼反射的特定作用。尽管已知眩晕和失衡与压缩率有关,但这项研究表明,在整个底部阶段,在240毫瓦时,姿势摇摆仍然有可测量的增加,这似乎与绝对压力有关。

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