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Can observers exploit enhanced motion parallax to control reaching movements within telepresence environments?

机译:观察者可以利用增强的运动视差,以控制在远程呈现环境中的达到移动吗?

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The experiments reported here were designed to address two aims. Th first was to determine the sufficiency of head- generated motion parallax, when present in isolation, for the control of natural prehensile movements. The second was to assess the consequences of providing enhanced parallax information for prehension. Enhanced parallax was created by changing the spatial extend of the movement of a camera relative to the extend of the teleoperator's head movements. The gain ranged from 0.5 to 4. The scene was viewed for 2 secs before reaches were made in open-loop conditions. Results showed clearly that information from motion parallax is sufficient to support reliable and accurate motor movements. The enhanced information, led to predictable distortions in perceived size and distance and corresponding alterations in the transport and grip components. The results suggest that the provision of parallax information is beneficial for tasks requiring the recovery of metric depth information. However, if enhanced parallax is used, which facilitates performance in a range of perceptual tasks, re-calibration of the relative motion information is necessary to prevent size/distance distortions.
机译:这里报告的实验旨在解决两个目标。首先是为了确定在隔离时,为了控制自然预生运动,确定了头生成的运动视差的充分性。第二个是评估提供预训所提供增强的视差信息的后果。通过改变相机相对于漫游仪的头部运动的延伸来改变相机的空间延伸来产生增强的视差。增益范围为0.5至4.在达到的开环条件下达到2秒之前查看了场景。结果表明,来自运动视差的信息足以支持可靠和准确的电动机运动。增强的信息导致了在感知的尺寸和距离和运输和握持部件中的相应改变的可预测的扭曲。结果表明,提供视差信息有利于需要恢复度量深度信息的任务。然而,如果使用增强的视差,这有利于在一系列感知任务中的性能,则需要重新校准相对运动信息以防止尺寸/距离失真。

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