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人类丘脑枕中的模式运动选择性

Pattern-motion selectivity in the human pulvinar.

作者信息

Villeneuve Martin Y, Kupers Ron, Gjedde Albert, Ptito Maurice, Casanova Christian

机构信息

Laboratoire des Neurosciences de la Vision, Ecole d'optométrie, Université de Montréal, CP 6128 succ. Centre-ville, Montréal, Québec, Canada H3C 3J7.

出版信息

Neuroimage. 2005 Nov 1;28(2):474-80. doi: 10.1016/j.neuroimage.2005.06.015. Epub 2005 Jul 18.

Abstract

On the basis of anatomical and physiological data obtained on animal models, we recently proposed that neurons in the main visual extrageniculate nuclei complex, the pulvinar, are actively involved in higher-order visual processing. Pulvinar neurons have been shown to integrate the component signals of a plaid pattern into a coherent global percept (pattern-motion selectivity). Using positron emission tomography (PET), we have investigated the possibility that the human pulvinar is also involved in plaid-defined higher-order motion integration. Plaid patterns were presented to normal observers in two conditions (coherent vs. transparent) created by varying the relative spatial frequency of the two gratings comprising the plaid. Regions of interest analysis revealed a significant activation of the pulvinar in the coherent condition supporting the notion that the human pulvinar nucleus is involved in higher-order motion processing. Plaid pattern activation was also observed in the medial temporal gyrus (area MT/V5), a motion area with strong anatomical connections to the pulvinar. These data provide the first direct evidence that the human pulvinar is involved in complex motion integration, as previously shown in animal models, and further support the existence of cortico-thalamo-cortical computational networks involved in higher-order visual processing.

摘要

基于在动物模型上获得的解剖学和生理学数据,我们最近提出,主要视觉外膝体核复合体(丘脑枕)中的神经元积极参与高阶视觉处理。丘脑枕神经元已被证明能将格子图案的组成信号整合为连贯的整体感知(图案运动选择性)。我们使用正电子发射断层扫描(PET)研究了人类丘脑枕也参与由格子定义的高阶运动整合的可能性。通过改变构成格子的两个光栅的相对空间频率,在两种条件(连贯与透明)下向正常观察者呈现格子图案。感兴趣区域分析显示,在连贯条件下丘脑枕有显著激活,支持了人类丘脑枕核参与高阶运动处理这一观点。在颞中回(MT/V5区)也观察到格子图案激活,MT/V5区是一个与丘脑枕有紧密解剖学联系的运动区域。这些数据提供了首个直接证据,证明人类丘脑枕如之前在动物模型中所示参与复杂运动整合,并进一步支持了参与高阶视觉处理的皮质 - 丘脑 - 皮质计算网络的存在。

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