Effect of mental task load on fronto-central theta activity in a deep saturation dive to 450 msw.

Undersea biomedical research Pub Date : 1992-07-01
J Lorenz, B Lorenz, M Heineke
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Abstract

The increase of theta activity (4-7 Hz) in the electroencephalogram (EEG) during deep diving is commonly attributed to pathophysiologic mechanisms underlying the high pressure neurologic syndrome. The aim of this study was to clarify whether more precise cognitive aspects of the condition may be described in which theta activity occurs during a deep dive. Among 4 divers who were repeatedly examined during the GUSI 14 dive to 450 msw, 3 divers exhibited a pronounced correlation between short-term memory load, as varied by the memory set size of Sternberg's memory search task (MST), and the size of a distinct peak in the theta band of the EEG-power spectrum. The power of this peak was greatest in the fronto-central electrode position (Fz), increased dramatically during MST-performance at pressure, and failed to subside fully 1 day before surfacing. Despite the close dependency of observed theta activity on cognitive demands, no consistent correlation with performance measures (mean reaction time and errors) was found. In one diver, theta waves of similar morphology appeared in the resting EEG and increased significantly during the dive. We suggest two alternative explanations for the positive interaction of memory load and hyperbaric exposure on Fz-theta: a) Both factors induce a state of increased mental effort or selectivity of attention, known to be accompanied by frontal theta activity from normobaric studies. b) Pressure abnormally facilitates or patterns rhythmical excitations underlying theta activity that would occur naturally to a lesser extent during certain mental activities, learning, or repetitive short-term memory operations.

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心理任务负荷对深度饱和潜水至450毫西瓦时额-中央θ活动的影响。
深潜时脑电图(EEG)中θ波活动(4- 7hz)的增加通常归因于高压神经综合征的病理生理机制。这项研究的目的是澄清是否可以更精确地描述这种情况的认知方面,即在深度潜水时发生的θ波活动。在GUSI 14潜水至450 msw的4名潜水者中,有3名潜水者表现出短期记忆负荷与脑电图功率谱θ波段明显峰的大小之间的显著相关性,这与Sternberg记忆搜索任务(MST)的记忆集大小有关。该峰值的功率在电极前中心位置(Fz)最大,在压力下的mst性能期间急剧增加,并且在表面前1天未能完全消退。尽管观察到的θ波活动与认知需求密切相关,但与表现测量(平均反应时间和错误)没有一致的相关性。在一名潜水员中,静息脑电图中出现了类似形态的θ波,并且在潜水过程中显著增加。对于记忆负荷和高压暴露对Fz-theta的正向相互作用,我们提出了两种可选的解释:a)这两个因素都会导致精神努力或注意力选择性增加的状态,从常压研究中可以知道,这伴随着额叶θ活动。b)在某些心理活动、学习或重复的短期记忆操作中,压力异常地促进或塑造了θ波活动背后的节律性兴奋,这种兴奋在较小程度上是自然发生的。
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