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The relation between functional magnetic resonance imaging activations and single-cell selectivity in the macaque intraparietal sulcus

机译:猕猴顶壁沟中功能性磁共振成像激活与单细胞选择性之间的关系

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Previous functional magnetic resonance (fMRI) studies in humans and monkeys have demonstrated that the anterior intraparietal sulcus (IPS) is sensitive to the depth structure defined by binocular disparity. However, in the macaque monkey, a single large activation was measured in the anterior lateral bank of the IPS, whereas in human subjects two separate regions were sensitive to depth structure from disparity. We performed fMRI and single-cell experiments in the same animals, in a large number of recording sites in the lateral bank of the IPS. The fMRI interaction effect between the factors curvature (curved or flat) and disparity (stereo or control) correctly predicted the location of higher-order disparity selective neurons that encoded the depth structure of objects. However the large region in the IPS activated by depth structure consisted of two patches of higher-order disparity-selective neurons, one in the anterior IPS and one located more posteriorly, surrounded by regions lacking such selectivity. Thus the IPS region activated by curved surfaces consists of at least two patches of higher-order disparity selective neurons, which may reconcile previous fMRI studies in monkeys and humans. (C) 2015 Elsevier Inc. All rights reserved.
机译:先前在人和猴子中进行的功能磁共振(fMRI)研究表明,前壁顶沟(IPS)对双眼视差定义的深度结构敏感。然而,在猕猴中,在IPS的前外侧堤中测量到一个大的激活,而在人类受试者中,两个独立的区域对视差造成的深度结构敏感。我们在IPS侧岸的大量记录部位的同一只动物中进行了fMRI和单细胞实验。 fMRI交互作用在曲率(弯曲或平坦)和视差(立体或控制)之间正确预测了编码对象深度结构的高阶视差选择性神经元的位置。但是,由深度结构激活的IPS中的大区域由两个高阶视差选择性神经元斑块组成,一个斑块位于前IPS中,另一个位于更后方,周围是缺乏这种选择性的区域。因此,由曲面激活的IPS区域至少由两个高阶视差选择性神经元斑块组成,这可能与以前在猴子和人类中进行的fMRI研究一致。 (C)2015 Elsevier Inc.保留所有权利。

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