School of Automation Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China.
School of Electronic Engineering and Automation, Guilin University of Electronic Science and Technology, Guilin 541004, China.
Sensors (Basel). 2021 Dec 26;22(1):142. doi: 10.3390/s22010142.
Multimodal bio-signals acquisition based on wearable devices and using virtual reality (VR) as stimulus source are promising techniques in emotion recognition research field. Numerous studies have shown that emotional states can be better evoked through Immersive Virtual Environments (IVE). The main goal of this paper is to provide researchers with a system for emotion recognition in VR environments. In this paper, we present a wearable forehead bio-signals acquisition pad which is attached to Head-Mounted Displays (HMD), termed HMD Bio Pad. This system can simultaneously record emotion-related two-channel electroencephalography (EEG), one-channel electrodermal activity (EDA), photoplethysmograph (PPG) and skin temperature (SKT) signals. In addition, we develop a human-computer interaction (HCI) interface which researchers can carry out emotion recognition research using VR HMD as stimulus presentation device. To evaluate the performance of the proposed system, we conducted different experiments to validate the multimodal bio-signals quality, respectively. To validate EEG signal, we have assessed the performance in terms of EEG eyes-blink task and eyes-open and eyes-closed task. The EEG eyes-blink task indicates that the proposed system can achieve comparable EEG signal quality in comparison to the dedicated bio-signals measuring device. The eyes-open and eyes-closed task proves that the proposed system can efficiently record alpha rhythm. Then we used signal-to-noise ratio (SNR) and Skin Conductance Reaction (SCR) signal to validate the performance for EDA acquisition system. A filtered EDA signal, with a high mean SNR of 28.52 dB, is plotted on HCI interface. Moreover, the SCR signal related to stimulus response can be correctly extracted from EDA signal. The SKT acquisition system has been validated effectively by the temperature change experiment when subjects are in unpleasant emotion. The pulse rate (PR) estimated from PPG signal achieved the low mean average absolute error (AAE), which is 1.12 beats per minute (BPM) over 8 recordings. In summary, the proposed HMD Bio Pad offers a portable, comfortable and easy-to-wear device for recording bio-signals. The proposed system could contribute to emotion recognition research in VR environments.
基于可穿戴设备采集多模态生物信号,并使用虚拟现实 (VR) 作为刺激源,是情感识别研究领域中很有前途的技术。大量研究表明,通过沉浸式虚拟环境 (IVE) 可以更好地唤起情绪状态。本文的主要目标是为研究人员提供在 VR 环境中进行情感识别的系统。本文提出了一种可穿戴额部生物信号采集垫,它附在头戴式显示器 (HMD) 上,称为 HMD Bio Pad。该系统可以同时记录与情绪相关的双通道脑电图 (EEG)、单通道皮肤电活动 (EDA)、光体积描记 (PPG) 和皮肤温度 (SKT) 信号。此外,我们开发了一种人机交互 (HCI) 接口,研究人员可以使用 VR HMD 作为刺激呈现设备进行情感识别研究。为了评估所提出系统的性能,我们分别进行了不同的实验来验证多模态生物信号的质量。为了验证 EEG 信号,我们评估了 EEG 眨眼任务和睁眼闭眼任务的性能。EEG 眨眼任务表明,与专用生物信号测量设备相比,所提出的系统可以实现相当的 EEG 信号质量。睁眼闭眼任务证明,所提出的系统可以有效地记录阿尔法节律。然后,我们使用信噪比 (SNR) 和皮肤电反应 (SCR) 信号来验证 EDA 采集系统的性能。在 HCI 接口上绘制了具有 28.52dB 高平均信噪比 (SNR) 的滤波 EDA 信号。此外,还可以从 EDA 信号中正确提取与刺激响应相关的 SCR 信号。通过在受试者处于不愉快情绪时进行的温度变化实验,有效地验证了 SKT 采集系统。从 PPG 信号估计的脉搏率 (PR) 平均平均绝对误差 (AAE) 较低,8 次记录的平均值为 1.12 次/分钟 (BPM)。总之,所提出的 HMD Bio Pad 提供了一种用于记录生物信号的便携式、舒适且易于佩戴的设备。所提出的系统可以为 VR 环境中的情感识别研究做出贡献。