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首页> 外文期刊>NeuroImage >Caudal Intraparietal Sulcus and three-dimensional vision: A combined functional magnetic resonance imaging and single-cell study
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Caudal Intraparietal Sulcus and three-dimensional vision: A combined functional magnetic resonance imaging and single-cell study

机译:尾部内沟和三维视觉:组合功能磁共振成像和单细胞研究

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Abstract The cortical network processing three-dimensional (3D) object structure defined by binocular disparity spans both the ventral and dorsal visual streams. However, very little is known about the neural representation of 3D structure at intermediate levels of the visual hierarchy. Here, we investigated the neural selectivity for 3D surfaces in the macaque Posterior Intraparietal area (PIP) in the medial bank of the caudal intraparietal sulcus (IPS). We first identified a region sensitive to depth-structure information in the medial bank of the caudal IPS using functional Magnetic Resonance Imaging (fMRI), and then recorded single-cell activity within this fMRI activation in the same animals. Most PIP neurons were selective for the 3D orientation of planar surfaces (first-order disparity) at very short latencies, whereas a very small fraction of PIP neurons were selective for curved surfaces (second-order disparity). A linear support vector machine classifier could reliably identify the direction of the disparity gradient in planar and curved surfaces based on the responses of a population of disparity-selective PIP neurons. These results provide the first detailed account of the neuronal properties in area PIP, which occupies an intermediate position in the hierarchy of visual areas involved in processing depth structure from disparity. Highlights ? The selectivity for 3D stimuli in PIP consists of zero-and first-order neurons and a small percentage of second-order neurons. ? The representation of depth structure at the population level, however, is largely higher order. ? PIP cells tolerate size variations and have parafoveal multi-focal receptive fields. ? PIP may be one of the earliest higher-order disparity-processing areas in the dorsal stream.
机译:摘要通过双目视差定义的皮质网络处理三维(3D)对象结构跨越腹侧和背部视觉流。然而,关于视觉层次结构的中间水平的3D结构的神经表示很少。在这里,我们研究了尾部内侧沟(IPS)中的猕猴内部地区(PIP)中的3D表面的神经选择性。我们首先使用功能磁共振成像(FMRI)在尾部IP的中间堤中敏感到尾部银行中的深度结构信息,然后在同一动物中的​​这种FMRI激活中记录单细胞活性。大多数PIP神经元在非常短的延迟下为平坦表面(一阶视差)的3D取向选择性,而弯曲表面(二阶视差)是选择性的非常小的PIP神经元。线性支撑矢量机分类器可以基于差异选择性皮点神经元群的响应可靠地识别平面和弯曲表面中的视差梯度方向。这些结果提供了区域pip中神经元特性的第一个详细描述,该区域pip占据了从差异处理深度结构的视觉区域的层次中的中间位置。强调 ? PIP中的3D刺激的选择性包括零和一阶神经元和一小部分二阶神经元。还是然而,人口水平的深度结构的表示在很大程度上更高。还是PIP细胞耐受尺寸变化并具有Parafoveal多焦点接收领域。还是PIP可以是背部流中最早的高阶视差处理区域之一。

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