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Guidance of visual direction by topographical vibrotactile cues on the torso.

机译:通过躯干上的地形触觉提示来指导视觉方向。

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摘要

Vibration on localised areas of skin can be used to signal spatial orientation, multi-directional motion and also to guide arm and hand movements. This study investigated the possibility that vibration at loci on the skin might also be used to cue gaze direction. Eight subjects made eye or (head + eye) gaze saccades in the dark cued by vibration stimulation at discrete loci spaced on a horizontal contour across the chest. Saccade and gaze amplitudes, latencies, and directions were analysed. In the first experiment, performed without training, subjects could only use vibration cues to direct their gaze in cardinal directions and gross quadrature. There was a high variability in the relationship between locus on the trunk and gaze direction in space, both within and between subjects. Saccade latencies ranged from 377 to 433 ms and were related to the loci of vibration; the further from the body midline the quicker the response. Since the association of skin loci with gaze direction did not appear intuitive a sub-group of four subjects were retested after intensive training with feedback until they attained criterion on midline identical with 0 degrees and 15 cm (to right/left of midline) identical with 45 degrees gaze shifts right and left. Training gave a moderate improvement in directional specificity of gaze to a particular locus on the skin. Gaze direction was linearly rescaled with respect to skin loci but variability and saccade latencies remained high. The uncertainty in the relationship between vibration locus and gaze direction and the prolonged latencies of responses indicate circuitous neuronal processing. There appears to be no pre-existing stimulus-response compatibility mapping between loci on the skin and gaze direction. Vibrotactile cues on the skin of the trunk only serve a gross indication of visual direction in space.
机译:皮肤局部区域的振动可用于表示空间方向,多向运动,还可以指导手臂和手部运动。这项研究调查了皮肤上基因座处的振动也可能被用来提示注视方向的可能性。八名受试者在黑暗中通过振动刺激在离散的基因座上以水平方向分布在整个胸部上,使眼睛或(头+眼)视线扫视。分析扫视和凝视的幅度,延迟和方向。在未经训练的情况下进行的第一个实验中,受试者只能使用振动提示将视线指向基本方向和总体正交方向。受试者内部和受试者之间,躯干上的轨迹与空间的注视方向之间的关系存在很大差异。扫视潜伏期从377到433 ms不等,与振动的轨迹有关。离身体中线越远,反应越快。由于皮肤位点与注视方向的关联似乎不直观,经过强化反馈后,对四名受试者的一个小组进行了重新测试,直到他们达到与0度和15厘米(中线左右)相同的中线标准为止。 45度注视向右和向左移动。训练使凝视的方向特异性对皮肤上的特定部位有中等程度的改善。注视方向相对于皮肤基因座线性重新定标,但变异性和扫视潜伏期仍然很高。振动轨迹和注视方向之间关系的不确定性以及响应的潜伏期长表明indicate回神经元加工。皮肤上的基因座和凝视方向之间似乎没有预先存在的刺激反应相容性映射。躯干皮肤上的触觉提示仅能粗略地指示太空中的视觉方向。

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