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运动盲患者能伸手去抓移动物体吗?

Can a motion-blind patient reach for moving objects?

作者信息

Schenk T, Mai N, Ditterich J, Zihl J

机构信息

Neurologische Klinik, Klinikum Grosshadern, Ludwig-Maximilians-Universität München, Marchioninistr. 23, 81366 Germany.

出版信息

Eur J Neurosci. 2000 Sep;12(9):3351-60. doi: 10.1046/j.1460-9568.2000.00194.x.

Abstract

It has been claimed that the visual brain is organized in two separate processing streams for spatial vision: one for perception and one for action. To determine whether motion vision is also divided into vision for action and for perception we examined the interceptive behaviour of the motion-blind patient LM. The task for LM and three age-matched control subjects was to reach-and-grasp for an object that moved away. Three experiments were conducted to examine the effects on perfomance of target speed (Expt 1), observation time (Expt 2) and visual feedback (Expt 3). As LM is only able to reach for objects which move at 0.5 m/s or less, her performance is inferior to that of controls who can reach for objects moving at 1.0 m/s, but it is better than would be expected from her performance in psychophysical experiments on her motion vision. Kinematic analysis of LM's reaching movements showed that she adapted the speed of her moving hand to the speed of the target but only when full vision was available. In contrast to normal subjects, LM required long observation times and vision of her moving hand to produce successful reaching responses. Thus, the impairment of both perception and action in LM suggests that the motion area MT/V5 is located at an early stage of the extrastriate hierarchy and provides input to both the perception and the action processing streams.

摘要

有人认为,视觉脑针对空间视觉在两个独立的处理流中进行组织:一个用于感知,一个用于行动。为了确定运动视觉是否也分为行动视觉和感知视觉,我们研究了运动盲患者LM的拦截行为。LM和三名年龄匹配的对照受试者的任务是伸手去抓一个移开的物体。进行了三个实验来考察目标速度(实验1)、观察时间(实验2)和视觉反馈(实验3)对表现的影响。由于LM只能伸手去抓速度为0.5米/秒或更低的物体,她的表现不如能够伸手去抓速度为1.0米/秒物体的对照受试者,但比她在关于其运动视觉的心理物理学实验中的表现要好。对LM伸手动作的运动学分析表明,她会根据目标速度调整移动手的速度,但仅在有完整视觉时才会这样做。与正常受试者不同,LM需要较长的观察时间以及看到自己移动的手才能做出成功的伸手反应。因此,LM在感知和行动方面的损伤表明,运动区域MT/V5位于纹外层级结构的早期阶段,并为感知和行动处理流都提供输入。

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