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Tactile distances are greatly underestimated in perception and motor reproduction

机译:感知和运动再现中的触觉距离被大大低估了

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Tactile distance perception typically requires the integration of tactile speed over time. In this study, we investigated tactile distance perception by comparing subjects' ability to reproduce tactile distance by moving the hand, and compared this to their ability to estimate the magnitude of sliding distance. This is the first investigation of subjects' ability to use motor reproduction to reproduce the same tactile distance that was felt during passive sliding contact. To clarify the role of vibrotactile information in sliding distance perception, we investigated tactile distance perception by manipulating tactile mechanical signals in two different ways: by adding mechanical noise to the finger, or by sensing and amplifying vibrotactile signals in the finger. In our experiment, subjects systematically underestimated tactile sliding distance. On average, they reproduced 55% of the actual distance. Responses on the magnitude estimation and the distance reproduction tasks were highly similar. Subjects estimated sliding distance to be significantly longer when tactile signals were manipulated compared to no vibrotactile manipulations, although mechanical noise impaired distance perception accuracy. These results suggest that further research is needed in order to clarify the effect of underestimation of tactile distance on fine motor tasks guided by touch.
机译:触觉距离感知通常需要随着时间的推移整合触觉速度。在这项研究中,我们通过比较受试者通过移动手来再现触觉距离的能力,并将其与他们估计滑动距离大小的能力进行比较,从而研究了触觉距离感知。这是对受试者使用运动复制来复制与被动滑动接触时相同的触觉距离的能力的首次调查。为了弄清触觉信息在滑行距离感知中的作用,我们通过以下两种方式操纵触觉机械信号来研究触觉距离感知:通过向手指添加机械噪声,或者通过感测和放大手指中的触觉信号。在我们的实验中,受试者系统地低估了触觉滑动距离。平均而言,它们重现了实际距离的55%。对震级估计和距离再现任务的响应非常相似。与没有震动触觉操纵相比,受试者估计触觉信号操纵时的滑动距离明显更长,尽管机械噪声会损害距离感知的准确性。这些结果表明,需要进行进一步的研究,以弄清触觉距离的低估对通过触摸引导的精细运动任务的影响。

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