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方向对比度和自我倾斜错觉对棒框效应的各自贡献。

Respective contribution of orientation contrast and illusion of self-tilt to the rod-and-frame effect.

作者信息

Cian C, Esquivié D, Barraud P A, Raphel C

机构信息

Centre de Recherches, Service de Santé des Armées Emile Parde, La Tronche, France.

出版信息

Perception. 1995;24(6):623-30. doi: 10.1068/p240623.

Abstract

The visual angle subtended by the frame seems to be an important determinant of the contribution of orientation contrast and illusion of self-tilt (ie vection) to the rod-and-frame effect. Indeed, the visuovestibular factor (which produces vection) seems to be predominant in large displays and the contrast effect in small displays. To determine how these two phenomena are combined to account for the rod-and-frame effect, independent estimates of the magnitude of each component in relation to the angular size subtended by the display were examined. Thirty-five observers were exposed to three sets of experimental situations: body-adjustment test (illusion of self-tilt only), the tilt illusion (contrast only) and the rod-and-frame test, each display subtending 7, 12, 28, and 45 deg of visual angle. Results showed that errors recorded in the three situations increased linearly with the angular size. Whatever the size of the frame, both mechanisms, contrast effect (tilt illusion) and illusory effect on self-orientation (body-adjustment test), are always present. However, rod-and-frame errors became greater at a faster rate than the other two effects as the size of teh stimuli became larger. Neither one nor the other independent phenomenen, nor the combined effect could fully account for the rod-and-frame effect whatever the angular size of the apparatus.

摘要

框架所对的视角似乎是方向对比度和自我倾斜错觉(即运动错觉)对杆框效应产生影响的一个重要决定因素。事实上,视觉前庭因素(产生运动错觉)在大型显示器中似乎占主导地位,而对比度效应在小型显示器中占主导地位。为了确定这两种现象如何结合起来解释杆框效应,研究了与显示器所对视角相关的每个成分大小的独立估计值。35名观察者参与了三组实验情境:身体调节测试(仅自我倾斜错觉)、倾斜错觉(仅对比度)和杆框测试,每个显示器所对视角分别为7度、12度、28度和45度。结果表明,在这三种情境中记录的误差随视角大小呈线性增加。无论框架大小如何,对比度效应(倾斜错觉)和对自我定向的错觉效应(身体调节测试)这两种机制总是存在的。然而,随着刺激大小的增加,杆框误差比其他两种效应增加得更快。无论仪器的视角大小如何,单独的任何一种现象,或其组合效应都不能完全解释杆框效应。

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