Xu Chang, Hauser Steven C, Wang Yuxiang, Gerling Gregory J
School of Engineering and Applied Science, University of Virginia, Charlottesville, VA 22904 USA.
World Haptics Conf. 2019 Jul;2019. doi: 10.1109/whc.2019.8816159. Epub 2019 Aug 29.
We employ distinct exploratory procedures to improve our perceptual judgments of an object's properties. For instance, with respect to compliance, we exert pressure against a resisting force. The present work investigates ties between strategies for active control of the finger and resultant cues by which compliances may be discriminated. In particular, we employ elastic spheres that co-vary in compliance and radius, as these generate non-differentiable contact areas and are discriminable only in active touch with proprioceptive inputs. During human-subjects psychophysical experiments, we measure touch force, fingertip displacement, and joint kinematics. Two active touch paradigms are used, with and without a force constraint. First, in behaviorally-controlled situations that make force cues non-useful, the results indicate that participants can employ a force-matching strategy between the compliant objects and rely upon displacement-related cues to differentiate them. We show these cues are directly tied to a proprioception mechanism, specifically, the angle of the MCP joint. However, in the fully active paradigm, participants control displacements instead and discriminate via force-related cues. Similar to prior findings in passive touch, we find that force-related cues, likewise, are used in active touch for the optimal and efficient discrimination of compliant objects.
我们采用不同的探索程序来改善我们对物体属性的感知判断。例如,对于顺应性,我们对阻力施加压力。目前的工作研究了手指主动控制策略与由此产生的可用于区分顺应性的线索之间的联系。特别是,我们使用顺应性和半径共同变化的弹性球体,因为这些球体产生不可微的接触区域,并且只有在与本体感觉输入的主动触摸中才能区分。在人体心理物理学实验中,我们测量触摸力、指尖位移和关节运动学。使用了两种主动触摸范式,一种有力量约束,一种没有。首先,在使力线索无用的行为控制情况下,结果表明参与者可以在顺应性物体之间采用力匹配策略,并依靠与位移相关的线索来区分它们。我们表明这些线索直接与本体感觉机制相关,具体来说,是掌指关节的角度。然而,在完全主动范式中,参与者改为控制位移并通过与力相关的线索进行区分。与被动触摸中的先前发现类似,我们发现与力相关的线索同样用于主动触摸中对顺应性物体的最佳和有效区分。