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高压暴露对认知表现的影响:在模拟 440 米海水饱和潜水过程中进行数字斯特鲁普任务的研究。

Effect of hyperbaric exposure on cognitive performance: an investigation conducting numerical Stroop tasks during a simulated 440 m sea water saturation diving.

机构信息

Undersea Medical Center, JMSDF, Tauraminatocho Mubanchi, Yokosuka, Kanagawa, 237-0071, Japan.

出版信息

J Physiol Anthropol. 2024 Oct 7;43(1):24. doi: 10.1186/s40101-024-00366-3.

Abstract

BACKGROUND

Saturation diving (SD) is useful and safe in deep diving for long durations. Japan Maritime Self-Defense Force (JMSDF) Undersea Medical Center (UMC) maintained safely deep 45 ATA SDHowever, cognitive performance was reportedly impaired by hyperbaric exposure in over 31 atmosphere absolute (ATA) SD. This study investigated the effects of hyperbaric exposure during 45 ATA deep SD on expert divers' cognitive function using Stroop tasks, a useful method to examine cognitive function, especially in narrow spaces such as SD chambers.

METHODS

Two numerical Stroop tasks were utilized to create two magnitude comparisons of a pair of single-digit numerical and physical tasks. Both numerical Stroop tasks were examined twice, at 1 and 45 ATAs, during a simulated 440 m of sea water depth for SD. Participants were 18 male expert JMSDF SD divers (age 36.58 ± 4.89 years).

RESULTS

In the numerical task, reaction time (RT) was significantly delayed at 45 ATA compared with 1 ATA in the incongruent condition. In the physical task, RT at 45 ATA was significantly delayed under all the conditions (congruent, incongruent, and neutral). The correct rates (CR) in both numerical Stroop tasks significantly decreased at 45 ATA compared with 1 ATA in the incongruent condition.

CONCLUSIONS

Our findings suggest that divers' cognition is impaired during 45 ATA deep SD. These results emphasize the importance of monitoring cognition in deep sea SD and highlight the need to educate and train for SD. Further examination combining Stroop tasks with other analyses such as event-related potential (ERP) is expected.

摘要

背景

饱和潜水(SD)在长时间的深海潜水作业中是安全且有效的。日本海上自卫队(JMSDF)水下医学中心(UMC)安全维持着 45 个大气压绝对(ATA)的 SD。然而,有报道称,在超过 31 个 ATA 的 SD 中,高压暴露会损害认知表现。本研究使用 Stroop 任务(一种评估认知功能的有效方法,特别是在 SD 舱等狭窄空间中),调查了在 45ATA 深海 SD 期间高压暴露对专家潜水员认知功能的影响。

方法

利用两个数值 Stroop 任务,创建了一对单数字数值和物理任务的两个数量比较。在模拟 440 米水深的 SD 期间,在 1 和 45ATA 下两次检查了这两个数值 Stroop 任务。参与者为 18 名男性 JMSDF SD 专家潜水员(年龄 36.58±4.89 岁)。

结果

在数值任务中,在不一致条件下,45ATA 的反应时间(RT)明显比 1ATA 延迟。在物理任务中,在所有条件下(一致、不一致和中性),45ATA 的 RT 均明显延迟。在不一致条件下,两个数值 Stroop 任务的正确率(CR)均明显比 1ATA 降低。

结论

我们的研究结果表明,潜水员的认知能力在 45ATA 深海 SD 期间受损。这些结果强调了在深海 SD 中监测认知的重要性,并突出了为 SD 进行教育和培训的必要性。预计将进一步结合 Stroop 任务和其他分析(如事件相关电位(ERP))进行检查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6c9/11459827/cae1bed615b6/40101_2024_366_Fig1_HTML.jpg

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