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Fingertip Interaction Metrics Correlate with Visual and Haptic Perception of Real Surfaces

机译:指尖交互度量与真实表面的视觉和触觉感知相关

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Both vision and touch contribute to the perception of real surfaces. Although there have been many studies on the individual contributions of each sense, it is still unclear how each modality's information is processed and integrated. To fill this gap, we investigated the similarity of visual and haptic perceptual spaces, as well as how well they each correlate with fingertip interaction metrics. Twenty participants interacted with ten different real surfaces from the Penn Haptic Texture Toolkit by either looking at or touching them and judged their similarity in pairs. By analyzing the resulting similarity ratings using non-metric multi-dimensional scaling (NMDS), we found that surfaces are similarly organized within the three-dimensional perceptual spaces of both modalities. Also, between-participant correlations were significantly higher in the haptic condition. In a separate experiment, we obtained the contact forces and accelerations acting on one finger interacting with each surface in a controlled way. We analyzed the collected fingertip interaction data in both the time and frequency domains. Our results suggest that the three perceptual dimensions for each modality can be represented by roughness/smoothness, hardness/softness, and friction, and that these dimensions can be estimated by surface vibration power, tap spectral centroid, and kinetic friction coefficient, respectively.
机译:愿景和触摸都有助于真实表面的感知。虽然有很多关于每个感觉的各个贡献的研究,但仍然尚不清楚每种方式如何处理和集成每种方式。为了填补这种差距,我们调查了视觉和触觉感知空间的相似性,以及它们与指尖交互度量相关的程度。二十名参与者通过观察或触摸它们,与Penn触觉纹理工具包中的十个不同的真实表面互动并触及它们成对判断它们的相似性。通过使用非度量多维缩放(NMDS)分析所得到的相似性评级,我们发现表面类似地组织在两种方式的三维感知空间内。此外,触觉状况的参与者相关性显着高。在单独的实验中,我们获得了在一个手指上以受控方式与每个表面相互作用的接触力和加速度。我们在时间和频率域中分析了收集的指尖交互数据。我们的研究结果表明,每种型号的三个感知尺寸可以通过粗糙度/平滑度,硬度/柔软度和摩擦来表示,并且这些尺寸可以通过表面振动功率,抽头光谱质心和动力学系数来估计。

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