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应用于脑岛皮质的高维模糊分割的节点检测

Node Detection Using High-Dimensional Fuzzy Parcellation Applied to the Insular Cortex.

作者信息

Vercelli Ugo, Diano Matteo, Costa Tommaso, Nani Andrea, Duca Sergio, Geminiani Giuliano, Vercelli Alessandro, Cauda Franco

机构信息

GCS fMRI, Koelliker Hospital, Turin, Italy; Functional Neuroimaging and Neural Complex System Group, Department of Psychology, University of Turin, Turin, Italy; Department of Psychology, University of Turin, Turin, Italy.

GCS fMRI, Koelliker Hospital, Turin, Italy.

出版信息

Neural Plast. 2016;2016:1938292. doi: 10.1155/2016/1938292. Epub 2015 Dec 31.

Abstract

Several functional connectivity approaches require the definition of a set of regions of interest (ROIs) that act as network nodes. Different methods have been developed to define these nodes and to derive their functional and effective connections, most of which are rather complex. Here we aim to propose a relatively simple "one-step" border detection and ROI estimation procedure employing the fuzzy c-mean clustering algorithm. To test this procedure and to explore insular connectivity beyond the two/three-region model currently proposed in the literature, we parcellated the insular cortex of 20 healthy right-handed volunteers scanned in a resting state. By employing a high-dimensional functional connectivity-based clustering process, we confirmed the two patterns of connectivity previously described. This method revealed a complex pattern of functional connectivity where the two previously detected insular clusters are subdivided into several other networks, some of which are not commonly associated with the insular cortex, such as the default mode network and parts of the dorsal attentional network. Furthermore, the detection of nodes was reliable, as demonstrated by the confirmative analysis performed on a replication group of subjects.

摘要

几种功能连接方法需要定义一组作为网络节点的感兴趣区域(ROI)。已经开发出不同的方法来定义这些节点并推导它们的功能连接和有效连接,其中大多数方法都相当复杂。在这里,我们旨在提出一种相对简单的“一步式”边界检测和ROI估计程序,该程序采用模糊c均值聚类算法。为了测试此程序并探索文献中目前提出的两/三区模型之外的岛叶连接性,我们对20名处于静息状态下接受扫描的健康右利手志愿者的岛叶皮质进行了分割。通过采用基于高维功能连接的聚类过程,我们证实了先前描述的两种连接模式。该方法揭示了一种复杂的功能连接模式,其中先前检测到的两个岛叶簇被细分为其他几个网络,其中一些网络通常与岛叶皮质无关,例如默认模式网络和背侧注意网络的部分区域。此外,正如在一组复制受试者上进行的验证性分析所表明的那样,节点的检测是可靠的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eca1/4736219/54ffe0d2a66f/NP2016-1938292.001.jpg

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