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Inertial acceleration as a measure of linear vection: An alternative to magnitude estimation

机译:惯性加速度作为线性对流的量度:幅度估计的替代方法

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摘要

The present study focused on the development of a procedure to assess perceived self-motion induced by visual surround motion - vection. Using an apparatus that permitted independent control of visual and inertial stimuli, prone observers were translated along their head x-axis (fore/aft). The observers' task was to report the direction of self-motion during passive forward and backward translations of their bodies coupled with exposure to various visual surround conditions. The proportion of 'forward' responses was used to calculate each observer's point of subjective equality (PSE) for each surround condition. The results showed that the moving visual stimulus produced a significant shift in the PSE when data from the moving surround condition were compared with the stationary surround and no-vision condition. Further, the results indicated that vection increased monotonically with surround velocities between 4 and 40/s. It was concluded that linear vection can be measured in terms of changes in the amplitude of whole-body inertial acceleration required to elicit equivalent numbers of 'forward' and 'backward' self-motion reports.
机译:本研究的重点是开发一种程序,以评估视觉环绕运动-对流引起的感知到的自我运动。使用允许独立控制视觉和惯性刺激的设备,俯卧的观察者沿着他们的头部x轴(前后)平移。观察者的任务是报告在身体被动向前和向后平移以及暴露于各种视觉环绕条件的过程中自我运动的方向。 “前向”响应的比例用于计算每个观察者针对每种环绕条件的主观平等点(PSE)。结果表明,当将来自移动环绕条件的数据与固定环绕条件和无视条件条件下的数据进行比较时,移动视觉刺激在PSE中产生了显着变化。此外,结果表明,风速在4至40 / s之间的情况下单调增加。得出的结论是,可以通过引出等效数量的“向前”和“向后”自运动报告所需的全身惯性加速度幅度的变化来测量线性对流。

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