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通过直接触摸和间接触摸进行纹理感知:两种探索模式下触觉纹理感知空间的分析

Texture perception through direct and indirect touch: an analysis of perceptual space for tactile textures in two modes of exploration.

作者信息

Yoshioka T, Bensmaïa S J, Craig J C, Hsiao S S

机构信息

Zanvyl Krieger Mind/Brain Institute, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

Somatosens Mot Res. 2007 Mar-Jun;24(1-2):53-70. doi: 10.1080/08990220701318163.

Abstract

Considerable information about the texture of objects can be perceived remotely through a probe. It is not clear, however, how texture perception with a probe compares with texture perception with the bare finger. Here we investigate the perception of a variety of textured surfaces encountered daily (e.g., corduroy, paper, and rubber) using the two scanning modes - direct touch through the finger and indirect touch through a probe held in the hand - in two tasks. In the first task, subjects rated the overall pair-wise dissimilarity of the textures. In the second task, subjects rated each texture along three continua, namely, perceived roughness, hardness, and stickiness of the surfaces, shown previously as the primary dimensions of texture perception in direct touch. From the dissimilarity judgment experiment, we found that the texture percept is similar though not identical in the two scanning modes. From the adjective rating experiments, we found that while roughness ratings are similar, hardness and stickiness ratings tend to differ between scanning conditions. These differences between the two modes of scanning are apparent in perceptual space for tactile textures based on multidimensional scaling (MDS) analysis. Finally, we demonstrate that three physical quantities, vibratory power, compliance, and friction carry roughness, hardness, and stickiness information, predicting perceived dissimilarity of texture pairs with indirect touch. Given that different types of texture information are processed by separate groups of neurons across direct and indirect touch, we propose that the neural mechanisms underlying texture perception differ between scanning modes.

摘要

通过探针可以远程感知有关物体质地的大量信息。然而,尚不清楚使用探针进行质地感知与直接用手指进行质地感知相比如何。在此,我们在两项任务中使用两种扫描模式——通过手指直接触摸和通过手持探针间接触摸——来研究日常遇到的各种有纹理表面(例如灯芯绒、纸张和橡胶)的感知。在第一项任务中,受试者对质地的整体两两差异进行评分。在第二项任务中,受试者沿着三个连续体对每种质地进行评分,即表面的感知粗糙度、硬度和粘性,这些在之前已被证明是直接触摸中质地感知的主要维度。从差异判断实验中,我们发现两种扫描模式下的质地感知虽不相同但相似。从形容词评级实验中,我们发现虽然粗糙度评级相似,但在不同扫描条件下,硬度和粘性评级往往存在差异。基于多维标度(MDS)分析,这两种扫描模式之间的差异在触觉质地的感知空间中很明显。最后,我们证明三个物理量,即振动功率、柔顺性和摩擦力携带粗糙度、硬度和粘性信息,可预测间接触摸时质地对的感知差异。鉴于不同类型的质地信息在直接触摸和间接触摸中由不同的神经元组进行处理,我们提出质地感知背后的神经机制在扫描模式之间存在差异。

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