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视觉引导运动过程中视觉运动系统的激活:一项功能磁共振成像研究。

Activation of visuomotor systems during visually guided movements: a functional MRI study.

作者信息

Ellermann J M, Siegal J D, Strupp J P, Ebner T J, Ugurbil K

机构信息

Center for Magnetic Resonance Research, University of Minnesota, School of Medicine, Minneapolis 55455, USA.

出版信息

J Magn Reson. 1998 Apr;131(2):272-85. doi: 10.1006/jmre.1998.1379.

Abstract

The dorsal stream is a dominant visuomotor pathway that connects the striate and extrastriate cortices to posterior parietal areas. In turn, the posterior parietal areas send projections to the frontal primary motor and premotor areas. This cortical pathway is hypothesized to be involved in the transformation of a visual input into the appropriate motor output. In this study we used functional magnetic resonance imaging (fMRI) of the entire brain to determine the patterns of activation that occurred while subjects performed a visually guided motor task. In nine human subjects, fMRI data were acquired on a 4-T whole-body MR system equipped with a head gradient coil and a birdcage RF coil using a T2*-weighted EPI sequence. Functional activation was determined for three different tasks: (1) a visuomotor task consisting of moving a cursor on a screen with a joystick in relation to various targets, (2) a hand movement task consisting of moving the joystick without visual input, and (3) a eye movement task consisting of moving the eyes alone without visual input. Blood oxygenation level-dependent (BOLD) contrast-based activation maps of each subject were generated using period cross-correlation statistics. Subsequently, each subject's brain was normalized to Talairach coordinates, and the individual maps were compared on a pixel by pixel basis. Significantly activated pixels common to at least four out of six subjects were retained to construct the final functional image. The pattern of activation during visually guided movements was consistent with the flow of information from striate and extrastriate visual areas, to the posterior parietal complex, and then to frontal motor areas. The extensive activation of this network and the reproducibility among subjects is consistent with a role for the dorsal stream in transforming visual information into motor behavior. Also extensively activated were the medial and lateral cerebellar structures, implicating the cortico-pontocerebellar pathway in visually guided movements. Thalamic activation, particularly of the pulvinar, suggests that this nucleus is an important subcortical target of the dorsal stream.

摘要

背侧通路是一条主要的视觉运动通路,它将纹状皮层和纹外皮层连接到顶叶后部区域。反过来,顶叶后部区域向额叶初级运动区和运动前区发送投射。这条皮层通路被认为参与将视觉输入转化为适当的运动输出。在本研究中,我们使用全脑功能磁共振成像(fMRI)来确定受试者执行视觉引导运动任务时出现的激活模式。在9名人类受试者中,使用T2 *加权回波平面成像(EPI)序列,在配备头部梯度线圈和鸟笼式射频线圈的4-T全身磁共振系统上采集fMRI数据。针对三种不同任务确定了功能激活:(1)视觉运动任务,即使用操纵杆在屏幕上相对于各种目标移动光标;(2)手部运动任务,即无视觉输入情况下移动操纵杆;(3)眼球运动任务,即无视觉输入情况下单独移动眼球。使用周期互相关统计生成每个受试者基于血氧水平依赖(BOLD)对比的激活图。随后,将每个受试者的大脑归一化到Talairach坐标,并逐像素比较个体图谱。保留至少六名受试者中四名受试者共有的显著激活像素,以构建最终的功能图像。视觉引导运动期间的激活模式与信息从纹状和纹外视觉区域流向顶叶后部复合体,然后流向额叶运动区一致。该网络的广泛激活以及受试者之间的可重复性与背侧通路在将视觉信息转化为运动行为中的作用一致。内侧和外侧小脑结构也被广泛激活,这表明皮质-脑桥-小脑通路参与视觉引导运动。丘脑激活,特别是丘脑枕的激活,表明该核是背侧通路的一个重要皮质下靶点。

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