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感官替代:使用振动触觉设备定位并走向目标。

Sensory substitution: Using a vibrotactile device to orient and walk to targets.

作者信息

Lobo Lorena, Travieso David, Jacobs David M, Rodger Matthew, Craig Cathy M

机构信息

Facultad de Psicología, Universidad Autónoma de Madrid.

School of Psychology, Queen's University of Belfast.

出版信息

J Exp Psychol Appl. 2018 Mar;24(1):108-124. doi: 10.1037/xap0000154.

Abstract

This study investigates how active exploration helps users of sensory substitution devices (SSDs) to detect action-relevant information. A vibrotactile SSD was developed that generates stimulation that is contingent on the users' movements. Target direction was specified by the location of the vibratory stimulation, and target distance by the size and intensity of the pattern of stimulation. A series of experiments was performed with blindfolded participants. In Experiments 1a to 1c, participants used the SSD to align their central body axis with prespecified targets. These experiments differed in the number of actuators that were used and whether online perception-action coupling was present. In Experiment 2, participants approached targets with forward locomotion along a straight line. Experiment 3 combined the previous experiments and studied the concomitant walking and steering toward targets. Oscillatory movements, which facilitated information pickup, were observed in all experiments. The exploratory oscillations were shown to depend on the online perception-action coupling and were related to cases of hyperacuity, for which absolute errors were found to be smaller than the areas of sensitivity of the actuators. It is concluded that, to improve the utility of SSDs, future research with SSDs should pay more attention to the role of active information detection. (PsycINFO Database Record

摘要

本研究调查了主动探索如何帮助感觉替代设备(SSD)的用户检测与动作相关的信息。开发了一种振动触觉SSD,其产生的刺激取决于用户的动作。目标方向由振动刺激的位置指定,目标距离由刺激模式的大小和强度指定。对蒙眼参与者进行了一系列实验。在实验1a至1c中,参与者使用SSD将其身体中轴线与预先指定的目标对齐。这些实验在使用的致动器数量以及是否存在在线感知-动作耦合方面存在差异。在实验2中,参与者沿直线向前移动接近目标。实验3结合了先前的实验,研究了同时朝着目标行走和转向的情况。在所有实验中都观察到了有助于信息获取的振荡运动。探索性振荡被证明取决于在线感知-动作耦合,并且与超敏锐度的情况相关,在超敏锐度情况下发现绝对误差小于致动器的敏感区域。得出的结论是,为了提高SSD的效用,未来对SSD的研究应更多地关注主动信息检测的作用。(PsycINFO数据库记录)

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