Nam Saekwang, Vardar Yasemin, Gueorguiev David, Kuchenbecker Katherine J
Haptic Intelligence Department, Max Planck Institute for Intelligent Systems, Stuttgart, Germany.
Front Neurosci. 2020 Apr 15;14:235. doi: 10.3389/fnins.2020.00235. eCollection 2020.
One may notice a relatively wide range of tactile sensations even when touching the same hard, flat surface in similar ways. Little is known about the reasons for this variability, so we decided to investigate how the perceptual intensity of light stickiness relates to the physical interaction between the skin and the surface. We conducted a psychophysical experiment in which nine participants actively pressed their finger on a flat glass plate with a normal force close to 1.5 N and detached it after a few seconds. A custom-designed apparatus recorded the contact force vector and the finger contact area during each interaction as well as pre- and post-trial finger moisture. After detaching their finger, participants judged the stickiness of the glass using a nine-point scale. We explored how sixteen physical variables derived from the recorded data correlate with each other and with the stickiness judgments of each participant. These analyses indicate that stickiness perception mainly depends on the pre-detachment pressing duration, the time taken for the finger to detach, and the impulse in the normal direction after the normal force changes sign; finger-surface adhesion seems to build with pressing time, causing a larger normal impulse during detachment and thus a more intense stickiness sensation. We additionally found a strong between-subjects correlation between maximum real contact area and peak pull-off force, as well as between finger moisture and impulse.
即使以相似的方式触摸同一个坚硬、平坦的表面,人们也可能会注意到触觉感受的范围相对较广。对于这种变异性的原因知之甚少,因此我们决定研究轻度粘性的感知强度与皮肤和表面之间的物理相互作用是如何关联的。我们进行了一项心理物理学实验,九名参与者以接近1.5牛的法向力主动将手指按压在一块平板玻璃上,几秒钟后松开。一个定制的仪器记录了每次相互作用过程中的接触力矢量和手指接触面积,以及试验前后手指的湿度。松开手指后,参与者用九点量表对玻璃的粘性进行判断。我们探究了从记录数据中得出的16个物理变量之间以及它们与每个参与者的粘性判断之间的相互关系。这些分析表明,粘性感知主要取决于松开前的按压持续时间、手指松开所需的时间,以及法向力改变符号后在法向方向上的冲量;手指与表面的粘附似乎随着按压时间的增加而增强,导致松开过程中产生更大的法向冲量,从而产生更强烈的粘性感觉。我们还发现,最大实际接触面积与峰值拉脱力之间以及手指湿度与冲量之间存在很强的个体间相关性。