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单侧皮质脑损伤对一级运动感知的选择性损害。

The selective impairment of the perception of first-order motion by unilateral cortical brain damage.

作者信息

Vaina L M, Makris N, Kennedy D, Cowey A

机构信息

Boston University, Department of Biomedical Engineering, MA 02215, USA.

出版信息

Vis Neurosci. 1998 Mar-Apr;15(2):333-48. doi: 10.1017/s0952523898152082.

Abstract

First-order (Fourier) motion consists of stable spatiotemporal luminance variations. Second-order (non-Fourier) motion consists instead of spatiotemporal modulation of contrast, flicker, or spatial frequency. In spite of extensive psychophysical and computational analysis of the nature and relationship of these two types of motion, it remains unclear whether they are detected by the same mechanism or whether separate mechanisms are involved. Here we report the selective impairment of first-order motion, on a range of local and global motion tasks, in the contralateral visual hemifield of a patient with unilateral brain damage centered on putative visual areas V2 and V3 in the medial part of the occipital lobe. His perception of second-order motion was unimpaired. As his disorder is the obverse of that reported after damage in the vicinity of human visual area MT (V5), the results support models of motion processing in which first- and second-order motion are, at least in part, computed separately at the extrastriate cortical level.

摘要

一阶(傅里叶)运动由稳定的时空亮度变化组成。二阶(非傅里叶)运动则由对比度、闪烁或空间频率的时空调制组成。尽管对这两种运动的性质和关系进行了广泛的心理物理学和计算分析,但它们是否由相同机制检测,或者是否涉及不同机制仍不清楚。在此,我们报告了一名单侧脑损伤患者,其损伤集中在枕叶内侧假定的视觉区域V2和V3,在一系列局部和全局运动任务中,其对侧视觉半视野的一阶运动存在选择性损伤。他对二阶运动的感知未受影响。由于他的病症与人类视觉区域MT(V5)附近损伤后报告的情况相反,这些结果支持了运动处理模型,即至少在部分程度上,一阶和二阶运动在纹外皮层水平是分开计算的。

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