急性体力消耗对抑制功能的神经影响

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-15 DOI:10.1016/j.physbeh.2024.114641
Shanguang Zhao , Khaoula Ait-Belaid , Yanqing Shen , Ke Zhou
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引用次数: 0

摘要

目的:我们旨在研究海上搜救(SAR)人员在体力透支状态下抑制功能表现的神经机制:我们旨在研究海上搜救(SAR)人员在体力衰竭状态下抑制功能表现的神经机制:背景:搜救任务对搜救人员的认知功能提出了严峻的挑战,尤其是在极端环境和体力透支的情况下。了解搜救人员在体力耗竭状态下的认知表现和神经活动对提高任务执行效率和确保工作安全非常重要:方法:招募了 26 名海上搜救人员,让他们模拟驾船作业,直至达到自我设定的精疲力竭状态。疲惫状态通过最大心率和主观疲劳量表进行监测。在执行急性疲惫任务之前和之后的Go-Nogo任务中,测量了两种事件相关电位(N200和P300):结果:与基线阶段相比,精疲力竭后,Nogo 条件下的准确率明显下降,N200 振幅显著增加,P300 振幅大幅下降。使用标准化低分辨率脑电磁断层扫描对体力耗竭前后进行比较后发现,在 Nogo 条件下,特勤人员体力耗竭后右颞中回 N200 分量的激活减少:结果表明,急性体力衰竭会严重影响搜救人员的抑制能力,延长冲突监测阶段,削弱反应抑制阶段。这些研究结果为了解体力耗竭如何影响对搜救行动的安全性和有效性至关重要的认知功能提供了有价值的见解,并可为改进培训和设备以提高极端条件下的工作表现提供参考。
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The neurological effects of acute physical exhaustion on inhibitory function

Objective

We aimed to investigate the neural mechanisms underlying the inhibitory function performance of maritime Search and Rescue (SAR) personnel in states of physical exhaustion.

Background

SAR missions pose serious challenges to the cognitive function of SAR personnel, especially in extreme environments and physical exhaustion. It is important to understand SAR personnel's cognitive performance and neural activity under exhaustion to improve the efficiency of task execution and ensure work safety.

Method

Twenty-six maritime SAR personnel were recruited to simulate boat operations until they reached a self-imposed state of exhaustion. The exhaustion state was monitored by maximum heart rate and subjective fatigue scale. Two event-related potentials, N200 and P300, were measured during a Go-Nogo task before and after a session of acute exhaustive tasks.

Results

After exhaustion, a marked reduction in accuracy, a notable increase in N200 amplitude, and a substantial decline in P300 amplitude under the Nogo condition were observed compared to the baseline phase. Pre- and post-exhaustion comparisons using standardized low-resolution brain electromagnetic tomography revealed reduced activations in the right middle temporal gyrus's N200 component after exhaustion in SAR personnel during the Nogo condition.

Conclusion

The results suggest that acute physical exhaustion significantly impacts the inhibition ability of SAR personnel, prolonging the conflict monitoring phase and weakening the response inhibition phase. These findings provide valuable insights into how physical exhaustion affects cognitive functions critical to the safety and effectiveness of SAR operations, and can inform strategies to improve training and equipment to enhance performance under extreme conditions.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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