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食蟹猴顶内沟区的功能和组织学特性。

Functional and histological properties of caudal intraparietal area of macaque monkey.

机构信息

Division of Applied System Neuroscience, Department of Advanced Medical Science, Nihon University School of Medicine, Itabashi, Tokyo, Japan.

出版信息

Neuroscience. 2010 Apr 28;167(1):1-10. doi: 10.1016/j.neuroscience.2010.01.028. Epub 2010 Jan 20.

Abstract

In our previous studies, we found that cells in the caudal intraparietal (CIP) area of the macaque monkey selectively responded to three-dimensional (3D) features, such as the axis and surface orientations, and we suggested that this area played a crucial role in 3D vision. In this study, we investigated (1) whether cells in CIP respond to other 3D features, such as curvature, and (2) whether CIP has any histological property to distinguish it from neighboring areas. Curvatures defined by a random-dot stereogram were presented on a display while the monkey performed a fixation task. The shape and amount of curvature were manipulated by two independent variables, shape index and curvedness, respectively. Two-way ANOVA showed that 19 out of 56 visually responsive cells (34.0%) showed the main effect of shape index. We tentatively designated these cells as 3D curvature-selective (3DCS). Of these, six 3DCS cells showed the main effects of shape index and curvedness, whereas 13 showed the main effect of shape index only. In both types of 3DCS cells, preferred shape indices calculated from tuning curves at two levels of curvedness matched well. These results indicate that the majority of 3DCS cells responded equally to a particular shape of curvatures with different curvedness levels. An immunohistochemical study showed that the recording sites of 3DCS cells were in a cortical region characterized by a dense SMI-32 immunoreactivity in the caudal portion of the lateral intraparietal sulcus (IPS), which suggests that this region is comparable to the lateral occipital parietal (LOP) designated in the caudal IPS previously. Further investigations showed that this region was separated from LIPv, the ventral subdivision of lateral intraparietal (LIP) located rostral to CIP/LOP. These results suggest that CIP is a cortical area distinct from LIP histologically as well as functionally.

摘要

在我们之前的研究中,我们发现猕猴顶内沟后部(CIP)区域的细胞选择性地对三维(3D)特征做出反应,例如轴和表面方向,我们认为该区域在 3D 视觉中起着至关重要的作用。在这项研究中,我们调查了(1)CIP 中的细胞是否对其他 3D 特征(例如曲率)做出反应,以及(2)CIP 是否具有任何组织学特性使其与相邻区域区分开来。当猴子执行固定任务时,在显示器上呈现由随机点立体图定义的曲率。通过两个独立的变量,分别是形状指数和弯曲度来操纵形状和曲率的大小。双向方差分析显示,在 56 个有视觉反应的细胞中,有 19 个(34.0%)表现出形状指数的主要影响。我们暂时将这些细胞指定为 3D 曲率选择性(3DCS)细胞。其中,6 个 3DCS 细胞表现出形状指数和弯曲度的主要影响,而 13 个细胞仅表现出形状指数的主要影响。在这两种类型的 3DCS 细胞中,从两个弯曲度水平的调谐曲线计算出的最佳形状指数非常匹配。这些结果表明,大多数 3DCS 细胞对不同弯曲度水平的特定曲率形状做出相同的反应。免疫组织化学研究表明,3DCS 细胞的记录部位位于外侧顶内沟(IPS)尾部的一个皮质区域,该区域在 SMI-32 免疫反应性很强,这表明该区域与先前在 IPS 尾部指定的外侧枕顶(LOP)相似。进一步的研究表明,该区域与 LIPv 分离,LIPv 是位于 CIP/LOP 上方的侧顶内(LIP)的腹侧细分。这些结果表明,CIP 在组织学和功能上都与 LIP 不同。

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