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Visual perception modulated by galvanic vestibular stimulation

机译:通过电镀前庭刺激调节的视觉感知

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Galvanic vestibular stimulation (GVS) induces a sensation of virtual acceleration as vestibular information and its application is expected as a wearable interface because it does not need a large device like a motion platform. In particular, GVS with alternating current (AC) can influence vision that mainly consists of a torsional component. This research aimed to quantitatively evaluate the effects of GVS on visual perception, and to infer its cause. To investigate these issues, we conducted psychophysical experiments during GVS with AC that consisted of three different image presentation methods; images fixed on spatial coordinate, head coordinate and retina coordinate systems. It is suggested that the visual motion perception induced by GVS is mediated by eye movements. As well, the stimulus frequency response of the current threshold, at which the subjects perceived visual motion, showed a U-shaped curve for stimulus frequency dependency.
机译:电流前庭刺激(GVS)引起虚拟加速的感觉,因为前庭信息,其应用预计是可穿戴界面,因为它不需要像运动平台这样的大型设备。特别地,具有交流电流(AC)的GV可以影响主要由扭转部件组成的视觉。本研究旨在定量评估GVS对视觉感知的影响,并推断出其原因。为了调查这些问题,我们在GVS中进行了心理物理实验,具有由三种不同的图像呈现方法组成的AC;固定在空间坐标,头部坐标和视网膜坐标系上的图像。建议,GVS诱导的视觉运动感知由眼球运动介导。同样,当前阈值的刺激频率响应,其中受试者感知视觉运动,显示了用于刺激频率依赖性的U形曲线。

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