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使用低成本可穿戴传感器测量心理负荷:对三种仪器的准确性、干扰性及研究可用性的洞察

Measuring Mental Workload With Low-Cost and Wearable Sensors: Insights Into the Accuracy, Obtrusiveness, and Research Usability of Three Instruments.

作者信息

Lo Julia C, Sehic Emdzad, Meijer Sebastiaan A

机构信息

Prorail.

KTH Royal Institute of Technology.

出版信息

J Cogn Eng Decis Mak. 2017 Dec;11(4):323-336. doi: 10.1177/1555343417716040. Epub 2017 Jul 10.

Abstract

The affordability of wearable psychophysiological sensors has led to opportunities to measure the mental workload of operators in complex sociotechnical systems in ways that are more objective and less obtrusive. This study primarily focuses on the sensors themselves by investigating low-cost and wearable sensors in terms of their accuracy, obtrusiveness, and usability for research purposes. Two sensors were assessed on their accuracy as tools to measure mental workload through heart rate variability (HRV): the E3 from Empatica and the emWave Pro from HeartMath. The BioPatch from Zephyr Technology, which is an U.S. Food and Drug Administration-approved device, was used as a gold standard to compare the data obtained from the other 2 devices regarding their accuracy on HRV. Linear dependencies for 6 of 10 HRV parameters were found between the emWave and BioPatch data and for 1 of 10 for the E3 sensor. In terms of research usability, both the E3 and the BioPatch had difficulty acquiring either sufficiently high data recording confidence values or normal distributions. However, the BioPatch output files do not require postprocessing, which reduces costs and effort in the analysis stage. None of the sensors was perceived as obtrusive by the participants.

摘要

可穿戴心理生理传感器的可承受性带来了机遇,能够以更客观且干扰性更小的方式测量复杂社会技术系统中操作员的心理负荷。本研究主要聚焦于传感器本身,通过研究低成本可穿戴传感器在准确性、干扰性和用于研究目的的可用性方面的表现。评估了两款传感器作为通过心率变异性(HRV)测量心理负荷工具的准确性:来自Empatica的E3和来自HeartMath的emWave Pro。来自Zephyr Technology的BioPatch是一款经美国食品药品监督管理局批准的设备,被用作金标准,以比较从其他两款设备获得的关于HRV准确性的数据。在emWave和BioPatch数据之间发现了10个HRV参数中的6个存在线性相关性,而E3传感器的10个参数中只有1个存在线性相关性。在研究可用性方面,E3和BioPatch在获取足够高的数据记录置信值或正态分布方面都存在困难。然而,BioPatch的输出文件不需要后处理,这在分析阶段降低了成本和工作量。参与者均未感觉到这些传感器具有干扰性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de4c/6187848/52c8306bc45e/10.1177_1555343417716040-fig1.jpg

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