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冷空气暴露和冷水局部浸泡期间自主神经功能和认知表现的性别差异。

Sex differences in autonomic functions and cognitive performance during cold-air exposure and cold-water partial immersion.

作者信息

Kong Youngsun, Hossain Md Billal, McNaboe Riley, Posada-Quintero Hugo F, Daley Matthew, Diaz Krystina, Chon Ki H, Bolkhovsky Jeffrey

机构信息

Biomedical Engineering, University of Connecticut, Storrs, CT, United States.

Analog Devices, Wilmington, MA, United States.

出版信息

Front Physiol. 2024 Oct 16;15:1463784. doi: 10.3389/fphys.2024.1463784. eCollection 2024.

Abstract

INTRODUCTION

This study investigated the differences between males and females in autonomic functions and cognitive performance during cold-air exposure and cold-water partial-immersion compared to a room temperature-air environment. Although several studies have investigated the effects of cold-air or cold-water exposures on autonomic function and cognitive performance, biological sex differences are often under-researched.

METHODS

Twenty-two males and nineteen females participated in the current study. Subjects completed a battery of cognitive tasks based upon those used within the Defense Automated Neurobehavioral Assessment (DANA), consisting of five subtasks that assess simple and procedural reaction time, spatial manipulation, attention, and immediate memory. In total, subjects took the battery within a 15-minute period across 30-minute intervals throughout the duration of environmental exposure. Across three separate days, subjects were exposed to three different environmental conditions: room temperature air (23°C), cold air (10°C), and cold water (15°C; in which subjects were immersed up to their necks). Room temperature and cold-air conditions consisted of five sessions (about 2.5 h), and the cold-water condition consisted of three sessions (about 1.5 h). During each experimental condition, physiological data were collected to assess autonomic function, including electrodermal activity (EDA) data and heart rate variability (HRV) derived from electrocardiogram signals.

RESULTS

Females showed slower reaction time in spatial manipulation tasks, immediate memory, and attention during cold-air exposures compared to room temperature air, whereas the performance of males were similar or better during cold-air exposures compared to room temperature air. Cold-water immersion affected the immediate memory performance of males. Both males and females exhibited smaller EDA amplitudes during cold-air and cold-water conditions compared to room temperature air. For HRV, only male subjects exhibited significantly greater values in low-frequency and very-low-frequency components during cold air exposure compared to the normal condition.

DISCUSSION

Sex introduces important differences in cognitive performance and autonomic functions during exposure to cold-air and cold-water. Therefore, sex should be considered when assessing the autonomic nervous system in cold environments and when establishing optimal thermal clothing for performance in operational environments. Our findings can assist with determination of operational clothing, temperature in operating environment, and personnel deployment to operational sites, particularly in settings involving both males and females.

摘要

引言

本研究调查了与室温空气环境相比,男性和女性在冷空气暴露和冷水局部浸泡期间自主神经功能和认知表现的差异。尽管有几项研究调查了冷空气或冷水暴露对自主神经功能和认知表现的影响,但生物性别差异往往研究不足。

方法

22名男性和19名女性参与了本研究。受试者基于国防自动化神经行为评估(DANA)中使用的认知任务完成了一系列测试,包括五个子任务,用于评估简单和程序性反应时间、空间操作、注意力和即时记忆。在环境暴露期间,受试者在30分钟的间隔内,总共15分钟内完成了该测试组。在三个不同的日子里,受试者暴露于三种不同的环境条件下:室温空气(23°C)、冷空气(10°C)和冷水(15°C;受试者颈部以下浸入水中)。室温空气和冷空气条件包括五个时段(约2.5小时),冷水条件包括三个时段(约1.5小时)。在每个实验条件下,收集生理数据以评估自主神经功能,包括皮肤电活动(EDA)数据和从心电图信号得出的心率变异性(HRV)。

结果

与室温空气相比,女性在冷空气暴露期间的空间操作任务、即时记忆和注意力方面反应时间较慢,而男性在冷空气暴露期间的表现与室温空气相比相似或更好。冷水浸泡影响了男性的即时记忆表现。与室温空气相比,男性和女性在冷空气和冷水条件下的EDA振幅均较小。对于HRV,与正常条件相比,只有男性受试者在冷空气暴露期间的低频和极低频成分中表现出显著更高的值。

讨论

性别在暴露于冷空气和冷水期间的认知表现和自主神经功能方面引入了重要差异。因此,在评估寒冷环境中的自主神经系统以及为作战环境中的表现确定最佳保暖衣物时,应考虑性别因素。我们的研究结果有助于确定作战服装、作战环境温度以及人员在作战地点的部署,特别是在涉及男性和女性的环境中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1e7/11521960/5ce9406b7677/fphys-15-1463784-g001.jpg

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