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The rice haptic rocker: Altering the perception of skin stretch through mapping and geometric design

机译:米饭触觉摇杆:通过测绘和几何设计改变皮肤延伸的感知

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Skin stretch haptic devices are well-suited for transmitting information through touch, a promising avenue in prosthetic research, addressing the lack of feedback in myoelectric designs. Rocker-based skin stretch devices have been proposed for sensory substitution and navigational feedback, but the designs vary in their geometry. Other works create torsional stretch, and utilize nonlinear mappings to enhance perception. This work investigates parameters of rocker geometry and mapping functions, and how they impact user perception. We hypothesize that perceptual changes are dependent on the choice of stretch increment sizes over the range of motion. The rocker geometry is varied with an offset between the rotational and geometric axes, and three rocker designs are evaluated during a targeting task implemented with a nonlinear or linear mapping. The rockers with no offset and a positive offset (wide) perform better than the negative offset (narrow) case, though the mapping method does not affect target accuracy.
机译:皮肤拉伸触觉设备非常适合通过触摸传输信息,这是假肢研究的有希望的大道,解决了云电设计中缺乏反馈。已经提出了基于摇臂的皮肤拉伸装置,用于感官替代和导航反馈,但设计在其几何形状中变化。其他作品创造扭转拉伸,并利用非线性映射来增强感知。这项工作调查了摇臂几何和映射函数的参数,以及它们如何影响用户感知。我们假设感知变化取决于在运动范围内的拉伸增量尺寸的选择。摇臂几何形状随着旋转和几何轴之间的偏移而变化,并且在用非线性或线性映射实现的靶向任务期间评估三个摇臂设计。没有偏移和正偏移(宽)的摇杆比负偏移(窄)案例更好,尽管映射方法不会影响目标精度。

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