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可变形物体柔软度估计中的视觉与触觉整合

Visual and haptic integration in the estimation of softness of deformable objects.

作者信息

Cellini Cristiano, Kaim Lukas, Drewing Knut

机构信息

Department of General Psychology, Justus-Liebig-University of Giessen, Otto-Behaghel-Strasse 10F, 35394 Giessen, Germany; e-mail:

出版信息

Iperception. 2013 Nov 29;4(8):516-31. doi: 10.1068/i0598. eCollection 2013.

Abstract

Softness perception intrinsically relies on haptic information. However, through everyday experiences we learn correspondences between felt softness and the visual effects of exploratory movements that are executed to feel softness. Here, we studied how visual and haptic information is integrated to assess the softness of deformable objects. Participants discriminated between the softness of two softer or two harder objects using only-visual, only-haptic or both visual and haptic information. We assessed the reliabilities of the softness judgments using the method of constant stimuli. In visuo-haptic trials, discrepancies between the two senses' information allowed us to measure the contribution of the individual senses to the judgments. Visual information (finger movement and object deformation) was simulated using computer graphics; input in visual trials was taken from previous visuo-haptic trials. Participants were able to infer softness from vision alone, and vision considerably contributed to bisensory judgments (∼35%). The visual contribution was higher than predicted from models of optimal integration (senses are weighted according to their reliabilities). Bisensory judgments were less reliable than predicted from optimal integration. We conclude that the visuo-haptic integration of softness information is biased toward vision, rather than being optimal, and might even be guided by a fixed weighting scheme.

摘要

柔软度感知本质上依赖于触觉信息。然而,通过日常经验,我们学会了所感受到的柔软度与为感受柔软度而执行的探索性动作的视觉效果之间的对应关系。在此,我们研究了视觉和触觉信息是如何整合以评估可变形物体的柔软度的。参与者仅使用视觉、仅使用触觉或同时使用视觉和触觉信息来区分两个较软或两个较硬物体的柔软度。我们使用恒定刺激法评估了柔软度判断的可靠性。在视觉 - 触觉试验中,两种感官信息之间的差异使我们能够测量各个感官对判断的贡献。视觉信息(手指运动和物体变形)使用计算机图形学进行模拟;视觉试验中的输入取自先前的视觉 - 触觉试验。参与者能够仅从视觉推断出柔软度,并且视觉对双感官判断有相当大的贡献(约35%)。视觉贡献高于从最优整合模型预测的结果(根据感官的可靠性对感官进行加权)。双感官判断的可靠性低于从最优整合预测的结果。我们得出结论,柔软度信息的视觉 - 触觉整合偏向于视觉,而非最优,甚至可能由固定的加权方案引导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb93/4129386/b2382d7206e9/i-perception-4-516-g0001.jpg

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