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A Neurophysiological Sensor-Equipped Head-Mounted Display for Instrumental QoE Assessment of Immersive Multimedia

机译:用于浸入式多媒体的QoE评估的配有神经生理传感器的头戴式显示器

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The last few years have seen a drastic increase in the consumption of virtual- and augmented-reality (VR and AR, respectively) applications. Ultimately, the success of any emerging technology will rely on the experience it provides the end user, and not on the technology itself. Subjective methods for quality-of-experience (QoE) assessment have as main disadvantage that converting such human factors into a quality rating is difficult, particularly for everyday users. To overcome this limitation, recent research has explored the use of objective methods to monitor neurophysiological correlates of relevant perception processes. In this paper, we describe the development of a neurophysiological sensor-equipped head-mounted display that combines a consumer off-the-shelf VR headset, a modified low-cost portable device for electroencephalogram (EEG) acquisition repurposed to simultaneously acquire EEG, electrocardiogram (ECG), and electrooculogram (EOG) signals with high-quality dry electrodes. The device was evaluated under three different scenarios, each one designed to test the different ExG modalities. Initial tests showed promising results and allowed for (1) steady-state visually evoked potentials to be accurately measured from EEG, (2) heart rate variability measurements to discriminate between different affective videos, and (3) EOG measurements to monitor gaze direction and eye blinks, all while users were mobile. Being able to accurately monitor signals from the autonomic and central nervous systems in an unobtrusive and portable manner is an important step for instrumental QoE assessment of emerging VR/AR applications.
机译:在过去的几年中,虚拟现实和增强现实(分别为VR和AR)应用程序的使用量急剧增加。最终,任何新兴技术的成功都将取决于它为最终用户提供的体验,而不是技术本身。体验质量(QoE)评估的主观方法的主要缺点是难以将此类人为因素转换为质量等级,特别是对于日常用户而言。为了克服这一局限性,最近的研究探索了使用客观方法来监测相关知觉过程的神经生理学相关性。在本文中,我们描述了配备了神经生理传感器的头戴式显示器的开发,该显示器结合了消费者现成的VR头戴式耳机,一种改良的低成本便携式脑电图(EEG)采集设备,旨在同时采集脑电图,心电图(ECG)和眼电图(EOG)信号与高质量的干电极一起使用。在三种不同的情况下对设备进行了评估,每种情况下都旨在测试不同的ExG模式。初步测试显示出令人鼓舞的结果,并允许(1)从EEG准确测量稳态视觉诱发电位,(2)心率变异性测量以区分不同的情感视频,以及(3)EOG测量以监视凝视方向和眼睛闪烁,所有用户都在移动。对于新兴的VR / AR应用程序进行仪器QoE评估,能够以不显眼且便携的方式准确地监视来自自主神经系统和中枢神经系统的信号是重要的一步。

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