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精神分裂症中的眼球运动与视觉运动感知II:整体连贯运动与目标速度和刺激密度的关系

Eye movement and visual motion perception in schizophrenia II: Global coherent motion as a function of target velocity and stimulus density.

作者信息

Slaghuis Walter L, Holthouse Tina, Hawkes Amy, Bruno Raimondo

机构信息

School of Psychology, University of Tasmania, Hobart, Tasmania, 7001, Australia.

出版信息

Exp Brain Res. 2007 Sep;182(3):415-26. doi: 10.1007/s00221-007-1003-3. Epub 2007 Jun 14.

Abstract

Coherent global motion is a compelling illusion of visual motion that is seen as the result of spatially and successively presented stimuli that are, in fact, stationary. In the present study the threshold perception of global coherent motion was measured using random-dot kinematograms in a group of normal observers and a group with mixed symptoms in schizophrenia who also participated in a companion study on smooth pursuit eye movement (Slaghuis et al. in Exp Brain Res, 2007). The velocity of coherent motion target stimuli was produced by varying the spatial step-size (Deltas) between dots to create three target velocities (6.0, 12.0 and 24.0 deg/s) which were measured at three target stimulus densities (100, 200, and 400 dots/deg(2)). A staircase procedure was used to determine the threshold for the number of target dots that was needed to move in the same direction to detect the direction of motion and which were plotted amongst a field of randomly moving visual noise dots. The findings demonstrate that in comparison with normal observers, the threshold for the perception of coherent motion in the group with schizophrenia was significantly higher at the lowest target velocity of 6.0 deg/s but not at target velocities of 12.0 and 24.0 deg/s. Stimulus density was found to have a significant effect on the perception of coherent motion, but it had no differential effect on performance in the groups. An examination of relationships between coherent motion and smooth pursuit eye movement in the companion study (Slaghuis et al. in Exp Brain Res, 2007) revealed significant, negative, correlations between coherent motion and apparent motion smooth pursuit eye velocity at target velocities of 6.0, 12.0 and 24.0 deg/s in the group with schizophrenia, but no such relationship was found in normal observers. It was concluded that the significant reduction in sensitivity for the perception of coherent motion at the lowest target velocity of 6.0 deg/s in the group with schizophrenia is consistent with an impairment in the detection of visual motion at a local level and in parallel for all parts of the image at striate and extrastiate levels of visual processing.

摘要

连贯的全局运动是一种令人信服的视觉运动错觉,它被视为空间上相继呈现的实际上静止的刺激所产生的结果。在本研究中,使用随机点运动图对一组正常观察者和一组患有精神分裂症且有混合症状的受试者进行了全局连贯运动的阈值感知测量,这些受试者还参与了一项关于平稳跟踪眼球运动的相关研究(斯拉格斯等人,《实验脑研究》,2007年)。通过改变点之间的空间步长(增量)来产生连贯运动目标刺激的速度,以创建三种目标速度(6.0、12.0和24.0度/秒),并在三种目标刺激密度(100、200和400个点/度²)下进行测量。采用阶梯法来确定为检测运动方向而需要在同一方向上移动的目标点数量的阈值,并将其绘制在随机移动的视觉噪声点场中。研究结果表明,与正常观察者相比,精神分裂症组在最低目标速度6.0度/秒时的连贯运动感知阈值显著更高,但在12.0和24.0度/秒的目标速度下并非如此。发现刺激密度对连贯运动的感知有显著影响,但对两组的表现没有差异影响。在相关研究(斯拉格斯等人,《实验脑研究》,2007年)中对连贯运动与平稳跟踪眼球运动之间的关系进行检查后发现,在精神分裂症组中,在6.0、12.0和24.0度/秒的目标速度下,连贯运动与明显运动平稳跟踪眼球速度之间存在显著的负相关,但在正常观察者中未发现这种关系。得出的结论是,精神分裂症组在最低目标速度6.0度/秒时对连贯运动感知的敏感性显著降低,这与视觉处理的纹状和纹外水平上局部层面以及图像所有部分同时检测视觉运动的损伤是一致的。

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