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通过对白质切割和示踪术的研究,鉴定出一条独特的关联纤维束“IPS-FG”,连接顶内沟区域和梭状回。

Identification of a distinct association fiber tract "IPS-FG" to connect the intraparietal sulcus areas and fusiform gyrus by white matter dissection and tractography.

机构信息

Department of Functional Anatomy, Graduate School of Medicine, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba, 260-8670, Japan.

出版信息

Sci Rep. 2020 Sep 23;10(1):15475. doi: 10.1038/s41598-020-72471-z.

Abstract

The intraparietal sulcus (IPS) in the posterior parietal cortex (PPC) is well-known as an interface for sensorimotor integration in visually guided actions. However, our understanding of the human neural network between the IPS and the cortical visual areas has been devoid of anatomical specificity. We here identified a distinctive association fiber tract "IPS-FG" to connect the IPS areas and the fusiform gyrus (FG), a high-level visual region, by white matter dissection and tractography. The major fiber bundles of this tract appeared to arise from the medial bank of IPS, in the superior parietal lobule (SPL), and project to the FG on the ventral temporal cortex (VTC) in post-mortem brains. This tract courses vertically at the temporo-parieto-occipital (TPO) junction where several fiber tracts intersect to connect the dorsal-to-ventral cortical regions, including the vertical occipital fasciculus (VOF). We then analyzed the structural connectivity of this tract with diffusion-MRI (magnetic resonance imaging) tractography. The quantitative tractography analysis revealed the major streamlines of IPS-FG interconnect the posterior IPS areas (e.g., IP1, IPS1) with FG (e.g., TF, FFC, VVC, PHA2, PIT) on the Human Connectome Project multimodal parcellation atlas (HCP MMP 1.0). Since the fronto-parietal network, including the posterior IPS areas, is recruited by multiple cognitive demands, the IPS-FG could play a role in the visuomotor integration as well as the top-down modulation of various cognitive functions reciprocally.

摘要

顶内沟(IPS)在后顶叶皮层(PPC)中是众所周知的视觉引导动作中感觉运动整合的接口。然而,我们对 IPS 与皮质视觉区域之间的人类神经网络的理解一直缺乏解剖学特异性。我们在这里通过白质解剖和轨迹追踪,确定了一个独特的关联纤维束“IPS-FG”,将 IPS 区域和梭状回(FG)连接起来,FG 是一个高级视觉区域。该束的主要纤维束似乎起源于上顶叶(SPL)IPS 的内侧壁,并投射到死后大脑中腹侧颞叶(VTC)的 FG。这条束在颞顶枕(TPO)交界处垂直走行,几条纤维束在该处交汇,连接包括垂直枕束(VOF)在内的背侧到腹侧皮质区域。然后,我们用弥散磁共振成像(MRI)轨迹追踪分析了该束的结构连接。定量轨迹追踪分析显示,IPS-FG 的主要束线将后 IPS 区域(例如,IP1、IPS1)与 FG(例如,TF、FFC、VVC、PHA2、PIT)相互连接,FG 是基于人类连接组计划多模态分割图谱(HCP MMP 1.0)定义的。由于包括后 IPS 区域在内的额顶叶网络被多种认知需求招募,IPS-FG 可能在视觉运动整合以及各种认知功能的自上而下调节中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7b2/7511306/cab5f7b6b142/41598_2020_72471_Fig1_HTML.jpg

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