Sensitivity and specificity of using exercise heart rate in a thermoneutral environment to predict heat tolerance status.

IF 1.4 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH International journal of occupational medicine and environmental health Pub Date : 2023-05-23 DOI:10.13075/ijomeh.1896.02065
Sarah Northway, Douglas Jones, Michael Buono
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Abstract

Objectives: Following heat illness, a return to activity may require passing a heat tolerance test (HTT). However, there are several logistical limitations to the widespread use of the HTT. Thus, it would be advantageous to develop a test that could be conducted in a thermoneutral (~22°C) environment to predict heat tolerance status. The purpose of the current study was to determine the sensitivity and specificity of using the criteria of a heart rate (HR) ≥130 bpm following 30 min of thermoneutral exercise in detecting heat-intolerant and heat-tolerant individuals.

Material and methods: Sixty-five subjects visited the lab on 3 separate days. The first visit consisted of completing a maximal oxygen uptake (VO2 max) test to assess cardiovascular fitness. For lab visits 2 and 3, subjects randomly completed a 2-hour walking treadmill test in either a hot (40°C, 40% relative humidity [RH]) or thermoneutral (22°C, 40% RH) environment.

Results: Forty-eight subjects were classified as heat-intolerant and 17 subjects as heat-tolerant. Using the criterion of a HR ≥130 bpm at 30 min of exercise in the thermoneutral environment, specificity (54%) and sensitivity (100%) of passing the HTT was calculated. Secondary analysis using multiple regression revealed 3 significant variables for predicting ending HR during the HTT. They were: 1) absolute VO2 max (l/min), 2) age, and 3) HR at 30 min of exercise during thermoneutral exercise.

Conclusions: Exercise in a thermoneutral environment had a positive predictive value of 100%, thus, if a subject has a HR ≥130 bpm at 30 min of exercise in a thermoneutral environment, they are very likely to fail a subsequent 2-hour HTT in the heat and be classified as heat-intolerant. Therefore, prior screening has the potential to save time and money, along with providing safety to a heat-intolerant subject. Int J Occup Med Environ Health. 2023;36(2):192-200.

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在热中性环境下使用运动心率预测热耐受状态的敏感性和特异性。
目的:中暑后,恢复活动可能需要通过耐热性测试(HTT)。然而,广泛使用HTT存在一些后勤方面的限制。因此,开发一种可以在热中性(~22°C)环境中进行的测试来预测耐热性状态是有利的。本研究的目的是确定热中性运动30分钟后心率(HR)≥130 bpm标准在检测热不耐和耐热个体中的敏感性和特异性。材料与方法:65名受试者分别于3天访问实验室。第一次访问包括完成最大摄氧量(VO2 max)测试以评估心血管健康。在第2次和第3次实验室访问中,受试者在高温(40°C, 40%相对湿度[RH])或热中性(22°C, 40%相对湿度)环境中随机完成2小时的跑步机测试。结果:热不耐者48例,耐热者17例。以热中性环境下运动30min时心率≥130bpm为标准,计算HTT通过的特异性(54%)和敏感性(100%)。二次分析采用多元回归揭示了3个显著变量预测HTT期间结束HR。它们是:1)绝对VO2 max (l/min), 2)年龄,3)热中性运动时30min时的HR。结论:热中性环境下的运动具有100%的阳性预测值,因此,如果受试者在热中性环境下运动30分钟时心率≥130 bpm,则极有可能在随后的2小时高温下不及格,并被归类为热不耐受。因此,事先筛查有可能节省时间和金钱,同时为热不耐受试者提供安全性。中华医学杂志,2009;36(2):391 - 391。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.40
自引率
5.00%
发文量
52
审稿时长
7.5 months
期刊介绍: The Journal is dedicated to present the contemporary research in occupational and environmental health from all over the world. It publishes works concerning: occupational and environmental: medicine, epidemiology, hygiene and toxicology; work physiology and ergonomics, musculoskeletal problems; psychosocial factors at work, work-related mental problems, aging, work ability and return to work; working hours, shift work; reproductive factors and endocrine disruptors; radiation, ionizing and non-ionizing health effects; agricultural hazards; work safety and injury and occupational health service; climate change and its effects on health; omics, genetics and epigenetics in occupational and environmental health; health effects of exposure to nanoparticles and nanotechnology products; human biomarkers in occupational and environmental health, intervention studies, clinical sciences’ achievements with potential to improve occupational and environmental health.
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