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Measuring tactile cues at the fingerpad for object compliances harder and softer than the skin

机译:在指垫上测量触觉提示,使物体比皮肤更柔软

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Distinguishing an object's compliance, into percepts of "softness" and "hardness," is crucial to our ability to grasp and manipulate it. Biomechanical cues at the skin's surface such as contact area and force rate have been thought to help encode compliance. However, no one has directly measured contact area with compliant materials, and few studies have considered compliances softer than the fingerpad. Herein, we developed a novel method to precisely measure the area in contact between compliant stimuli and the fingerpad, at given levels of force and displacement. To determine the method's robustness, we conducted psychophysical and biomechanical experiments with human subjects. The results indicate that cues including contact area at stimulus peak force of 3 Newtons, force rate over stimulus movement and at peak force, displacement and/or time to reach peak force may help in discriminating compliances while the directional spread of contact area is less important. Between softer and harder compliances, some cues were slightly more evident, though not yet definitively. Based upon the method's utility, the next step is to conduct broader experiments to distill the mixture of cues that encode compliance. The importance of such work lies in building haptic displays, for example, to render virtual tissues.
机译:将对象的依从性区分为“柔软”和“硬度”的感知,对于我们掌握和操纵它的能力至关重要。人们认为,皮肤表面的生物力学线索(如接触面积和受力率)有助于编码顺应性。但是,没有人能直接测量与顺应性材料的接触面积,很少有研究认为顺应性比指垫还软。本文中,我们开发了一种新颖的方法,可以在给定的力和位移水平下精确测量顺应性刺激物与指板之间的接触面积。为了确定该方法的鲁棒性,我们对人类受试者进行了心理物理和生物力学实验。结果表明,线索包括在3牛顿的刺激峰值力处的接触面积,在刺激运动上的作用力速率以及在峰值力,位移和/或达到峰值力的时间可能有助于区分依从性,而接触区域的方向性分布则不那么重要。 。在较弱的合规性与较硬的合规性之间,有些线索似乎更为明显,尽管尚不确定。基于该方法的实用性,下一步是进行更广泛的实验,以提取编码顺应性的线索的混合物。此类工作的重要性在于构建触觉显示器,例如以渲染虚拟组织。

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