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神经系统对空间定向的控制。

Neural systems control of spatial orienting.

作者信息

Posner M I, Cohen Y, Rafal R D

出版信息

Philos Trans R Soc Lond B Biol Sci. 1982 Jun 25;298(1089):187-98. doi: 10.1098/rstb.1982.0081.

Abstract

A peripheral visual cue in an empty field (1) often summons head or eyes, or both, (2) improves efficiency at the cued position while attention is directed to it, even without overt movements, and (3) reduces processing efficiency at the cued position once attention is withdrawn. We have studied the time course and the effects of mid-brain and cortical damage on these components of orienting. The facilitation arises from shifts in covert attention. In cases of mid-brain degeneration due to progressive supranuclear palsy, saccadic movements were abolished, while covert orienting still occurs. However, covert orienting was found to be delayed in directions in which eye movements were most affected, suggesting a role for mid-brain pathways in covert orienting. Parietal lesions can cause massive loss in detection contralateral to the lesion. This is especially true when attention has been directed to the opposite side. These findings relate aspects of covert orienting of attention to neural control systems.

摘要

在空白视野中的外周视觉线索(1)常常会引发头部或眼睛,或两者的转动;(2)在注意力指向该线索位置时,即使没有明显的动作,也能提高该位置的处理效率;(3)一旦注意力撤离,该线索位置的处理效率就会降低。我们研究了中脑和皮层损伤对这些定向成分的时间进程和影响。促进作用源于隐蔽注意力的转移。在进行性核上性麻痹导致中脑变性的病例中,眼球跳动运动消失,但隐蔽定向仍然存在。然而,发现在眼球运动受影响最大的方向上,隐蔽定向会延迟,这表明中脑通路在隐蔽定向中发挥作用。顶叶病变可导致病变对侧的检测能力大幅丧失。当注意力指向对侧时尤其如此。这些发现将注意力的隐蔽定向方面与神经控制系统联系起来。

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