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功能磁共振成像揭示的人类追踪眼球运动的功能解剖学

Functional anatomy of pursuit eye movements in humans as revealed by fMRI.

作者信息

Petit L, Haxby J V

机构信息

Laboratory of Brain and Cognition, National Institute of Mental Health, Bethesda, Maryland 20892, USA.

出版信息

J Neurophysiol. 1999 Jul;82(1):463-71. doi: 10.1152/jn.1999.82.1.463.

Abstract

We have investigated the functional anatomy of pursuit eye movements in humans with functional magnetic imaging. The performance of pursuit eye movements induced activations in the cortical eye fields also activated during the execution of visually guided saccadic eye movements, namely in the precentral cortex [frontal eye field (FEF)], the medial superior frontal cortex (supplementary eye field), the intraparietal cortex (parietal eye field), and the precuneus, and at the junction of occipital and temporal cortex (MT/MST) cortex. Pursuit-related areas could be distinguished from saccade-related areas both in terms of spatial extent and location. Pursuit-related areas were smaller than their saccade-related counterparts, three of eight significantly so. The pursuit-related FEF was usually inferior to saccade-related FEF. Other pursuit-related areas were consistently posterior to their saccade-related counterparts. The current findings provide the first functional imaging evidence for a distinction between two parallel cortical systems that subserve pursuit and saccadic eye movements in humans.

摘要

我们利用功能磁共振成像研究了人类追踪眼球运动的功能解剖结构。追踪眼球运动的表现会在皮质眼区引发激活,这些区域在执行视觉引导的扫视眼球运动时也会被激活,即在中央前皮质[额眼区(FEF)]、额上内侧皮质(辅助眼区)、顶内皮质(顶眼区)和楔前叶,以及枕颞皮质交界处(MT/MST)皮质。追踪相关区域在空间范围和位置方面都可与扫视相关区域区分开来。追踪相关区域比其扫视相关对应区域小,八个中有三个差异显著。与追踪相关的额眼区通常低于与扫视相关的额眼区。其他追踪相关区域始终位于其扫视相关对应区域的后方。目前的研究结果为区分人类中服务于追踪和扫视眼球运动的两个平行皮质系统提供了首个功能成像证据。

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