实弹焚烧消防训练中的热暴露对消防员姿势稳定性的影响。

Ergonomics international journal Pub Date : 2019-01-01 Epub Date: 2019-08-06 DOI:10.23880/eoji-16000213
U Singh, A Mani, K James, M B Rao, A Bhattacharya
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引用次数: 0

摘要

消防员在不理想的环境中从事体力密集型工作,因此保持良好的功能性姿势平衡或稳定性就显得更加重要。作为训练的一部分,消防员需要在高压力和高热环境下执行体力要求很高的任务。这些繁重的任务会导致身体疲劳加剧,进而导致工作表现不佳和/或姿势不稳定。本研究的目的是:1)调查实弹射击训练引发的热应激对静态姿势平衡的影响;2)调查常用监测生理反应(核心体温、心率、血氧饱和度和血压)与静态姿势平衡测量之间的关联。26 名消防员(平均值 ± SD:年龄 36.0 岁 ± 5.2,体重 216 磅 ± 34,体重指数 29.7 ± 4.2)参加了现场消防训练,并执行了以下任务:搜救、水带推进和支援。在热暴露(PRE)之前和之后(POST1、POST2、POST3),使用可穿戴三维惯性传感器系统对消防员的姿势平衡进行评估,在睁眼和闭眼条件下进行 30 秒钟的单脚平衡测试,量化线性加速度(LIN ACC)和角速度(AV)围绕三个正交轴[前后轴(AP)、内外侧轴(ML)和垂直轴(V)]的随时间变化。来自三维可穿戴传感器的结果变量被用于创建基于三维相位平面的姿势稳定性指标。在实弹消防训练演习中,核心体温(CBT)的生理测量值(用无线电药片测量)和热感显著增加。此外,消防员还感到身体疲劳和呼吸困难加剧。角度综合稳定性参数(ACSP)、围绕 ML 轴的均方根角速度与 CBT 显著相关。在对消防员的情景、身高和体重进行调整后进行的多变量分析中,这些静态姿势平衡的测量值与 CBT 有明显的相关性。根据模型结果,ACSP 所显示的静态姿势平衡会随着 CBT 的增加而恶化。未来的研究应在身体四肢和接近质量中心的位置放置传感器,以更全面地捕捉影响姿势平衡的运动学运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Heat Exposure from Live-Burn Fire Training on Postural Stability of Firefighters.

Firefighters perform physically intensive jobs in suboptimal environments, making it even more important for them to maintain good functional postural balance or stability. As part of their training, firefighters are required to perform physically demanding tasks under high stress and high heat environments. These demanding tasks lead to increased physical fatigue which can then result in poor performance and/or postural instability. The objectives of this study were to 1) investigate the effect of live-firefighting training-induced heat stress on static postural balance, and 2) investigate the association between commonly monitored physiological responses (core body temperature, heart rate, oxygen saturation and blood pressure) and measures of static postural balance. Twenty-six firefighters (mean ± SD: age 36.0 years ±5.2, weight 216 lbs. ± 34, BMI 29.7 ± 4.2) participated in live firefighting training while performing following tasks: search and rescue, hose advancement, and backup. Prior to heat exposure (PRE) and following each scenario (POST1, POST2, POST3), firefighters' postural balance was assessed with a wearable 3-D inertial sensor system quantifying time dependent changes in linear acceleration (LIN ACC) and angular velocity (AV) about three orthogonal axes [Anterior-Posterior (AP), Medial-Lateral (ML), and vertical (V)] during one foot balance tests for 30 seconds under eyes open and eyes closed conditions. The outcome variables from 3-D wearable sensors were used to create 3-D Phase-Plane based postural stability metrics. Physiological measurement of core body temperature (CBT) (measured with a radio pill) as well as perception of heat increased significantly during the live fire-training exercise. In addition, firefighters also perceived an increase in physical fatigue and respiratory distress. Angular combined stability parameters (ACSP), RMS angular velocity around ML axis were significantly correlated with CBT. In the multivariate analysis adjusted for the scenarios, height and weight of the firefighters, these measures of static postural balance were significantly associated with CBT. As per the model results, static postural balance, as indicated by ACSP, worsened with an increase in CBT. Future studies should place sensors at body extremities along with close to center of mass to capture the kinematic movements more comprehensively influencing postural balance.

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