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A reexamination of the size-weight illusion induced by visual size cues.

机译:对视觉大小提示引起的大小重量错觉的重新检查。

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The size-weight illusion induced by visually perceived sizes was reexamined to investigate whether this illusion is a sensory based or cognitive-based phenomenon. A computer-augmented environment was utilized to manipulate visual size information of target objects independently of their haptic information. Two physical cubes of equal mass (30.0 g) and size (3.0 x 3.0 x 3.0 cm) were suspended in parallel by wires attached to small graspable rings, in order to keep haptically obtained information constant between lifts. Instead of directly seeing each physical cube, subjects viewed 3D graphics of a cube with a wire and a ring that were precisely superimposed onto each physical cube. Seventeen subjects vertically lifted these augmented cubes, one after the other, by grasping the attached rings, and then reported their perception of cube heaviness. The graphical size of a comparison cube pseudo randomly varied for every comparison from 1.0 x 1.0 x 1.0 to 9.0 x 9.0 x 9.0 cm, while that of a standard cube remained constant (5.0 x 5.0 x 5.0 cm). Results indicated that the size-weight illusion frequently and systematically occurred for all the subjects such that when the comparison cube was relatively smaller than the standard cube, it was perceived to be heavier, and vice versa. As the size difference increased between the standard cube and the comparison cube, more subjects experienced the illusion, and vice versa. Follow-up tests showed occurrence of the size-weight illusion was significantly correlated with subject's sensitivity to discriminate weight, but not with sensitivity to discriminate visual size. Results suggest that the size-weight illusion induced by only visual size cues in an augmented environment is sensory based, and depends on an individual's integrated perception based on multimodal sensory information.
机译:重新检查了由视觉感知的大小引起的大小-重量错觉,以研究这种错觉是基于感觉的还是基于认知的现象。利用计算机增强的环境来独立于目标对象的触觉信息来操纵目标对象的视觉大小信息。为了使触觉获得的信息在升降机之间保持恒定,将两个质量相等(30.0 g)和尺寸(3.0 x 3.0 x 3.0 cm)的物理立方体平行悬挂,这些导线连接到小的可抓握环上。受试者没有直接看到每个物理立方体,而是观看了精确地叠加在每个物理立方体上的带有线和环的立方体的3D图形。 17名受试者通过抓住附着的戒指,一个接一个地垂直举起这些增强的立方体,然后报告他们对立方体沉重的感觉。每次比较时,比较立方体的图形尺寸伪随机变化,从1.0 x 1.0 x 1.0到9.0 x 9.0 x 9.0 cm,而标准立方体的图形尺寸保持不变(5.0 x 5.0 x 5.0 cm)。结果表明,所有对象都经常且系统地发生大小-重量错觉,使得当比较立方体比标准立方体相对较小时,被认为更重,反之亦然。随着标准立方体和比较立方体之间大小差异的增加,更多的对象会遇到错觉,反之亦然。后续测试显示,大小-重量错觉的发生与受试者区分体重的敏感性显着相关,但与区分视觉尺寸的敏感性没有关系。结果表明,在增强环境中仅由视觉尺寸提示引起的尺寸-重量幻觉是基于感觉的,并且取决于基于多模式感觉信息的个人的综合感知。

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