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绘制人类顶叶面部区域的复杂拓扑组织图。

Mapping the complex topological organization of the human parietal face area.

机构信息

Institute for Neural Computation, University of California, San Diego, La Jolla, CA 92093, USA.

Department of Electrical and Computer Engineering, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

Neuroimage. 2017 Dec;163:459-470. doi: 10.1016/j.neuroimage.2017.09.004. Epub 2017 Sep 6.

Abstract

The macaque monkey ventral intraparietal area (VIP) contains neurons with aligned visual-tactile receptive fields anchored to the face and upper body. Our previous fMRI studies using standard head coils found a human parietal face area (VIP+ complex; putative macaque VIP homologue) containing superimposed topological maps of the face and near-face visual space. Here, we construct high signal-to-noise surface coils and used phase-encoded air puffs and looming stimuli to map topological organization of the parietal face area at higher resolution. This area is consistently identified as a region extending between the superior postcentral sulcus and the upper bank of the anterior intraparietal sulcus (IPS), avoiding the fundus of IPS. Using smaller voxel sizes, our surface coils picked up strong fMRI signals in response to tactile and visual stimuli. By analyzing tactile and visual maps in our current and previous studies, we constructed a set of topological models illustrating commonalities and differences in map organization across subjects. The most consistent topological feature of the VIP+ complex is a central-anterior upper face (and upper visual field) representation adjoined by lower face (and lower visual field) representations ventrally (laterally) and/or dorsally (medially), potentially forming two subdivisions VIPv (ventral) and VIPd (dorsal). The lower visual field representations typically extend laterally into the anterior IPS to adjoin human area AIP, and medially to overlap with the parietal body areas at the superior parietal ridge. Significant individual variations are then illustrated to provide an accurate and comprehensive view of the topological organization of the parietal face area.

摘要

猕猴腹侧顶内沟区域(VIP)含有以面部和上半身为参照点的视觉触觉感受野对齐的神经元。我们之前使用标准头部线圈的 fMRI 研究发现,人类顶叶面部区域(VIP+ 复合体;假定猕猴 VIP 同源物)包含面部和近面部视觉空间的叠加拓扑图。在这里,我们构建了高信噪比的表面线圈,并使用相位编码的空气喷射和逼近刺激来以更高的分辨率绘制顶叶面部区域的拓扑结构。该区域被一致地确定为位于后中央沟上方和前内顶沟(IPS)的上缘之间的区域,避开 IPS 的底部。使用更小的体素大小,我们的表面线圈接收到了对触觉和视觉刺激的强烈 fMRI 信号。通过分析我们当前和以前研究中的触觉和视觉图,我们构建了一组拓扑模型,说明了不同个体之间地图组织的异同。VIP+ 复合体最一致的拓扑特征是中央前上部面部(和上部视野)的表示,其下方为下部面部(和下部视野)的表示,位于腹侧(外侧)和/或背侧(内侧),可能形成两个分区 VIPv(腹侧)和 VIPd(背侧)。下部视野的表示通常在外侧延伸到前 IPS 以毗邻人类 AIP 区,在中间与上顶骨脊的顶叶体区重叠。然后说明了显著的个体变异,以提供顶叶面部区域拓扑组织的准确和全面的视图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c66/6262884/201b4d504d89/nihms-906436-f0001.jpg

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