Human brainstem auditory-evoked potentials in deep experimental diving to pressures up to 62.5 bar.

Undersea biomedical research Pub Date : 1992-09-01
J Lorenz, G Athanassenas, P Hampe, G Plath, J Wenzel
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Abstract

The neural mechanisms underlying the high pressure neurologic syndrome (HPNS), which limit man's safe advance to extreme diving depths, are still unclear. This work was aimed at a better understanding of HPNS through study of brainstem auditory-evoked potentials (BAEP). BAEP were repeatedly recorded within 2 experimental chamber dives, Titan VIII (2 divers, maximum depth of 560 msw, compression time to bottom 109 h) and Titan XI (3 divers, maximum depth of 615 msw, compression time to bottom 240 h). Prolongation of the IV/V-complex occurred in 2 divers upon reaching 525 msw during Titan VIII compression and was accompanied by vestibular disturbances and amplitude increases of finger tremor. Both categories of changes--clinical signs and IV/V delay--gradually diminished during a 4-day stay at 545 msw, suggesting that they depended on excessive compression rates and insufficient acclimation time. Longer holding times at intermittent depths during Titan XI clearly reduced both HPNS symptoms and magnitude of prolongation of IV/V latencies. Wave I and wave III latency did not significantly change, pointing to a suppression of pontomesencephalic transmission. We infer that pressure suppresses synaptic transmission or triggers an increase of cortical or subcortical efferent inhibitory modulation of upper pontine and midbrain auditory afferents. Postdive controls revealed no persistent changes of BAEP measures in either the Titan VIII or XI divers.

人类脑干听觉诱发电位在深度实验潜水压力高达62.5巴。
高压神经综合征(HPNS)限制了人类安全进入极端潜水深度,其神经机制尚不清楚。本研究旨在通过脑干听觉诱发电位(BAEP)的研究,更好地了解脑干神经刺激系统。这两类变化——临床症状和IV/V延迟——在545 msw的4天住院期间逐渐减少,表明它们依赖于过度的压缩率和不足的适应时间。波I和波III潜伏期没有明显变化,表明脑桥前脑传递受到抑制。我们推断,压力抑制突触传递或触发脑桥上部和中脑听觉传入的皮层或皮层下传出抑制调节的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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