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消防员急性应激期间心电图ST、QT和RR间期的变化:一项初步研究。

Changes in ST, QT and RR ECG intervals during acute stress in firefighters: a pilot study.

作者信息

Paiva Joana S, Rodrigues Susana, Cunha Joao Paulo Silva

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:3378-3381. doi: 10.1109/EMBC.2016.7591452.

Abstract

Firefighting is a stressful occupation. The monitoring of psychophysiological measures in those professionals can be a way to prevent and early detect cardiac diseases and other stress-related problems. The current study aimed to assess morphological changes in the ECG signal induced by acute stress. A laboratory protocol was conducted among 6 firefighters, including a laboratory stress-inducer task - the Trier Social Stress Task (TSST) - and a 2-choice reaction time task (CRTT) that was performed before (CRTT1) and after (CRTT2) the stress condition. ECG signals were continuously acquired using the VitalJacket®, a wearable t-shirt that acts as a medical certified ECG monitor. Results showed that ECG morphological features such as QT and ST intervals are able to differentiate stressful from non stressful events in first responders. Group mean Visual Analogue Scale (VAS) for stress assessment significantly increased after the stress task (TSST), relatively to the end of CRTT2 (after TSST: 4.67±1.63; after CRTT2: 3.17±0.75), a change that was accompanied by a significant increase in group mean QT and ST segments corrected for heart rate during TSST. These encouraging results will be followed by larger studies in order to explore those measures and its physiological impact under realistic environments in a higher scalability.

摘要

消防工作是一项压力巨大的职业。对这些专业人员的心理生理指标进行监测,可能是预防和早期发现心脏病及其他与压力相关问题的一种方法。当前的研究旨在评估急性应激引起的心电图信号形态变化。对6名消防员进行了一项实验室方案,包括一项实验室压力诱导任务——特里尔社会应激测试(TSST),以及一项二选一反应时间任务(CRTT),该任务在应激状态之前(CRTT1)和之后(CRTT2)进行。使用VitalJacket®连续采集心电图信号,这是一款可穿戴T恤,可作为经医学认证的心电图监测仪。结果表明,心电图形态特征如QT和ST间期能够区分急救人员的应激事件和非应激事件。应激任务(TSST)后,用于应激评估的组平均视觉模拟量表(VAS)相对于CRTT2结束时显著增加(TSST后:4.67±1.63;CRTT2后:3.17±0.75),这一变化伴随着TSST期间经心率校正的组平均QT和ST段显著增加。这些令人鼓舞的结果之后将开展更大规模的研究,以便在更高的可扩展性下,在现实环境中探索这些指标及其生理影响。

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