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快速规则扫视和反扫视的神经控制:一项使用正电子发射断层扫描的研究。

Neural control of fast-regular saccades and antisaccades: an investigation using positron emission tomography.

作者信息

Doricchi F, Perani D, Incoccia C, Grassi F, Cappa S F, Bettinardi V, Galati G, Pizzamiglio L, Fazio F

机构信息

Centro Ricerche di Neuropsicologia-IRCCS, Clinica S. Lucia, Rome, Italy.

出版信息

Exp Brain Res. 1997 Aug;116(1):50-62. doi: 10.1007/pl00005744.

Abstract

Regional cerebral blood flow changes related to the performance of two oculomotor tasks and a central fixation task were compared in ten healthy human subjects. The tasks were: (a) performance of fast-regular saccades; (b) performance of voluntary antisaccades away from a peripheral cue; (c) passive maintenance of central visual fixation in the presence of irrelevant peripheral stimulation. The saccadic task was associated with a relative increase in activity in a number of occipitotemporal areas. Compared with both the fixation and the saccadic task, the performance of antisaccades activated a set of areas including: the superior and inferior parietal lobules, the precentral and prefrontal cortex, the cingulate cortex, and the supplementary motor area. The results of the present study suggest that: (a) compared with self-determined saccadic responses the performance of fast regular, reflexive saccades produces a limited activation of the frontal eye fields; (b) in the antisaccadic task the inferior parietal lobes subserve operations of sensory-motor integration dealing with attentional disengagement from the initial peripheral cue (appearing at an invalid spatial location) and with the recomputation of the antisaccadic vector on the basis of the wrong (e.g., spatially opposite) information provided by the same cue.

摘要

在10名健康人类受试者中,比较了与两种眼球运动任务和一项中央注视任务执行相关的局部脑血流变化。这些任务包括:(a) 快速规则扫视的执行;(b) 从外周提示物处进行的随意反扫视的执行;(c) 在存在无关外周刺激的情况下中央视觉注视的被动维持。扫视任务与多个枕颞区域的活动相对增加有关。与注视任务和扫视任务相比,反扫视的执行激活了一组区域,包括:顶上小叶和顶下小叶、中央前回和前额叶皮质、扣带回皮质以及辅助运动区。本研究结果表明:(a) 与自主决定的扫视反应相比,快速规则的反射性扫视的执行对额叶眼区的激活有限;(b) 在反扫视任务中,顶下小叶参与感觉运动整合操作,处理从初始外周提示物(出现在无效空间位置)上脱离注意力,以及根据同一提示物提供的错误(例如,空间上相反)信息重新计算反扫视向量。

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