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使用可穿戴入耳体积描记法进行精神压力检测。

Mental Stress Detection Using a Wearable In-Ear Plethysmography.

机构信息

Department of AI Convergence, Pukyong National University, Busan 48513, Republic of Korea.

Department of Electronic Engineering, Pukyong National University, Busan 48513, Republic of Korea.

出版信息

Biosensors (Basel). 2023 Mar 17;13(3):397. doi: 10.3390/bios13030397.

Abstract

This study presents an ear-mounted photoplethysmography (PPG) system that is designed to detect mental stress. Mental stress is a prevalent condition that can negatively impact an individual's health and well-being. Early detection and treatment of mental stress are crucial for preventing related illnesses and maintaining overall wellness. The study used data from 14 participants that were collected in a controlled environment. The participants were subjected to stress-inducing tasks such as the Stroop color-word test and mathematical calculations. The raw PPG signal was then preprocessed and transformed into scalograms using continuous wavelet transform (CWT). A convolutional neural network classifier was then used to classify the transformed signals as stressed or non-stressed. The results of the study show that the PPG system achieved high levels of accuracy (92.04%) and F1-score (90.8%). Furthermore, by adding white Gaussian noise to the raw PPG signals, the results were improved even more, with an accuracy of 96.02% and an F1-score of 95.24%. The proposed ear-mounted device shows great promise as a reliable tool for the early detection and treatment of mental stress, potentially revolutionizing the field of mental health and well-being.

摘要

本研究提出了一种耳戴式光体积描记术(PPG)系统,旨在检测精神压力。精神压力是一种普遍存在的状况,可能对个人的健康和幸福感产生负面影响。早期检测和治疗精神压力对于预防相关疾病和维护整体健康至关重要。该研究使用了 14 名参与者在受控环境中收集的数据。参与者接受了应激诱导任务,如斯特鲁普颜色-词测试和数学计算。然后对原始 PPG 信号进行预处理,并使用连续小波变换(CWT)将其转换为标度图。然后使用卷积神经网络分类器对转换后的信号进行分类,分为应激和非应激。研究结果表明,PPG 系统达到了高精度(92.04%)和 F1 分数(90.8%)。此外,通过向原始 PPG 信号添加高斯白噪声,结果得到了进一步改善,准确率达到 96.02%,F1 分数达到 95.24%。所提出的耳戴式设备作为一种用于早期检测和治疗精神压力的可靠工具具有很大的潜力,可能会彻底改变心理健康和幸福感领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba6b/10046749/f438a5d61c2f/biosensors-13-00397-g001.jpg

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