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Stressing the accuracy: Wrist-worn wearable sensor validation over different conditions

机译:强调准确性:在不同条件下腕带穿戴传感器验证

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Wearable sensors are promising instruments for conducting both laboratory and ambulatory research in psychophysiology. However, scholars should be aware of their measurement error and the conditions in which accuracy is achieved. This study aimed to assess the accuracy of a wearable sensor designed for research purposes, the E4 wristband (Empatica, Milan, Italy), in measuring heart rate (HR), heart rate variability (HRV), and skin conductance (SC) over five laboratory conditions widely used in stress reactivity research (seated rest, paced breathing, orthostatic, Stroop, speech task) and two ecological conditions (slow walking, keyboard typing). Forty healthy participants concurrently wore the wristband and two gold standard measurement systems (i.e., electrocardiography and finger SC sensor). The wristband accuracy was determined by evaluating the signal quality and the correlations with and the Bland-Altman plots against gold standard-derived measurements. Moreover, exploratory analyses were performed to assess predictors of measurement error. Mean HR measures showed the best accuracy over all conditions. HRV measures showed satisfactory accuracy in seated rest, paced breathing, and recovery conditions but not in dynamic conditions, including speaking. Accuracy was diminished by wrist movements, cognitive and emotional stress, nonstationarity, and larger wrist circumferences. Wrist SC measures showed neither correlation nor visual resemblance with finger SC signal, suggesting that the two sites may reflect different phenomena. Future studies are needed to assess the responsivity of wrist SC to emotional and cognitive stress. Limitations and implications for laboratory and ambulatory research are discussed.
机译:可穿戴传感器是在精神生理学中进行实验室和动态研究的有希望的仪器。但是,学者应该了解他们的测量误差和准确性实现的条件。本研究旨在评估专为研究目的而设计的可穿戴传感器,E4腕带(EMPatica,米兰,意大利)的可穿戴传感器的准确性,以测量心率(HR),心率变异性(HRV)和皮肤电导(SC)超过五个实验室条件广泛用于应力反应性研究(坐姿休息,节奏呼吸,外翻,争吵,语音任务)和两个生态条件(慢散,键盘打字)。四十个健康的参与者同时戴上腕带和两个金标准测量系统(即心电图和手指SC传感器)。通过评估信号质量和与金标准测量的膨胀性级别的信号质量和相关性来确定腕带精度。此外,进行了探索性分析以评估测量误差的预测器。平均人力资源措施在所有条件下显示出最佳准确性。 HRV措施在坐骑休息,节奏呼吸和恢复条件下表现出令人满意的准确性,但不在动态条件下,包括说话。手腕运动,认知和情绪压力,非间抗性和较大的手腕周围减少了准确性。手腕SC措施既不与手指SC信号相关也不是视觉相似,表明两个站点可能反映不同现象。需要进行未来的研究来评估手腕SC对情绪和认知压力的响应性。讨论了对实验室和动态研究的限制和影响。

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