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论椭圆轨迹的感知与生成之间的相似性

On the similarities between the perception and production of elliptical trajectories.

作者信息

Levit-Binnun Nava, Schechtman Edna, Flash Tamar

机构信息

Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, POB 26, Rehovot, 76100, Israel.

出版信息

Exp Brain Res. 2006 Jul;172(4):533-55. doi: 10.1007/s00221-006-0355-4. Epub 2006 Feb 25.

Abstract

In an earlier study, Viviani and Stucchi (J Exp Psychol Hum Percept Perform 18:603-623, 1992) have introduced a visual illusion, whereby it was shown that when subjects are asked to determine what movement of a light spot, when tracing an elliptical trajectory, appears to be most uniform, they tend to choose movements that are close to obeying the 2/3 power law (Lacquaniti et al. Acta Psychol 54:115-130, 1983) rather than constant speed movements, even though the actual changes in velocity could exceed 200%. Here we have extended the study of this illusion by directly testing the effect of the shape (eccentricity) and size (perimeter) of the elliptical trajectory, the duration of the tracing of the ellipse and the effect of fixation on the subjects' decision regarding movement uniformity. We found that the ellipse's eccentricity and tracing out speed of the elliptical trajectory significantly affect the subjects' decisions, although the effect of eccentricity seems to be stronger than that of speed. Our findings also indicated that fixation significantly affects the subject's decision for ellipses that are more eccentric. Surprisingly, the ellipse's perimeter had a much smaller effect on the subjects' decisions, although changes in the ellipse's perimeter should have the same effect on the average velocity as changes in the time it takes to trace out the ellipse. This suggested the possibility that the subjects based their decision regarding movement uniformity on other velocity variables in addition to tangential velocity. Computer simulations we have performed have led us to conclude that the subjects' perception of movement uniformity may also be based on assessing the variations in angular velocity and possibly also in affine velocity. Our behavioral and simulation studies thus suggest that the motion perception system is quite responsive to variations in the velocity along an elliptical trajectory but in a way that depends on the path's curvature. Furthermore, the movement is judged to be more uniform when there are minimal differences in angular, tangential and perhaps also in affine velocities, along the trajectory. Our results suggest the existence of similar underlying constraints that affect both the motion perception and production systems when the movements are associated with very large velocities or large changes in velocity along more curved portions of the trajectory. Our observations therefore provide further insight into the possibility that these constraints are either imposed by the underlying neuronal dynamics, the internal architecture of the cortical neural populations or the variables used in the coding of both sensory and motor information regarding movement.

摘要

在早期的一项研究中,维维亚尼和斯图基(《实验心理学杂志:人类知觉与表现》第18卷:603 - 623页,1992年)引入了一种视觉错觉,结果表明,当要求受试者确定一个沿椭圆轨迹运动的亮点的何种运动看起来最均匀时,他们倾向于选择接近遵循2/3幂律(拉库阿尼蒂等人,《心理学学报》第54卷:115 - 130页,1983年)的运动,而非匀速运动,即便实际速度变化可能超过200%。在此,我们通过直接测试椭圆轨迹的形状(偏心率)和大小(周长)、椭圆追踪的持续时间以及注视对受试者关于运动均匀性决策的影响,扩展了对这种错觉的研究。我们发现椭圆的偏心率和椭圆轨迹的追踪速度显著影响受试者的决策,尽管偏心率的影响似乎比速度的影响更强。我们的研究结果还表明,注视对更偏心的椭圆的受试者决策有显著影响。令人惊讶的是,椭圆的周长对受试者决策的影响要小得多,尽管椭圆周长的变化对平均速度的影响应与追踪椭圆所需时间的变化相同。这表明受试者关于运动均匀性的决策除了切向速度外,可能还基于其他速度变量。我们进行的计算机模拟使我们得出结论,受试者对运动均匀性的感知可能还基于评估角速度的变化,也可能基于仿射速度的变化。因此,我们的行为和模拟研究表明,运动感知系统对沿椭圆轨迹的速度变化相当敏感,但方式取决于轨迹的曲率。此外,当沿轨迹的角速度、切向速度以及或许还有仿射速度差异最小时,运动被判断为更均匀。我们的结果表明,当运动与非常大的速度或沿轨迹更弯曲部分的速度大幅变化相关联时,存在类似的潜在约束影响运动感知和产生系统。因此,我们的观察为这些约束是由潜在的神经元动力学、皮层神经群体的内部结构或用于编码关于运动的感觉和运动信息的变量所施加这一可能性提供了进一步的见解。

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