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Non-Contact Measurement of Motion Sickness Using Pupillary Rhythms from an Infrared Camera

机译:使用红外相机使用瞳孔节律的运动疾病的非接触式测量

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摘要

Both physiological and neurological mechanisms are reflected in pupillary rhythms via neural pathways between the brain and pupil nerves. This study aims to interpret the phenomenon of motion sickness such as fatigue, anxiety, nausea and disorientation using these mechanisms and to develop an advanced non-contact measurement method from an infrared webcam. Twenty-four volunteers (12 females) experienced virtual reality content through both two-dimensional and head-mounted device interpretations. An irregular pattern of the pupillary rhythms, demonstrated by an increasing mean and standard deviation of pupil diameter and decreasing pupillary rhythm coherence ratio, was revealed after the participants experienced motion sickness. The motion sickness was induced while watching the head-mounted device as compared to the two-dimensional virtual reality, with the motion sickness strongly related to the visual information processing load. In addition, the proposed method was verified using a new experimental dataset for 23 participants (11 females), with a classification performance of 89.6% (n = 48) and 80.4% (n = 46) for training and test sets using a support vector machine with a radial basis function kernel, respectively. The proposed method was proven to be capable of quantitatively measuring and monitoring motion sickness in real-time in a simple, economical and contactless manner using an infrared camera.
机译:生理和神经机制反映在通过大脑和瞳孔神经之间的神经通路瞳孔节奏。本研究旨在解释运动病,如疲劳,焦虑,恶心和定向障碍使用这些机制的现象,并制定从红外线摄像头的先进的非接触测量方法。二十四志愿者(女12)经历过两个二维和头戴式设备解释虚拟现实内容。瞳孔节律的不规则图案,通过瞳孔直径的增加平均值和标准偏差并减小瞳孔节奏相干比表明,显露参与者经历晕车后。一边看头戴式设备相比,二维虚拟现实,与晕车密切相关的视觉信息处理负荷晕车诱导。此外,所提出的方法是使用一种新的实验数据集23倍的参与者(11名女性),使用支持向量验证,具有89.6%(N = 48)和80.4%(N = 46),用于训练和测试集的分类性能机的径向基函数内核,分别。所提出的方法被证明是能够定量地测量和使用红外摄像机以简单,经济的和非接触的方式监视运动病实时。

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