脑连接工具箱的功能近红外光谱数据

Chunjie Zhu, Kecheng Yan, Hai-juan Huang, Dongyang Wang, Yizheng Zhang, Jinyan Sun
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引用次数: 0

摘要

功能近红外光谱(fNIRS)是一种很有前途的无创光学功能神经成像方法,也是脑网络研究的一种有用方法。功能连通性和有效连通性是脑连接主义的两种重要分析方法。现有的工具箱为近红外光谱数据的预处理和任务激活分析提供了极大的便利。然而,目前仍然缺乏能够同时评估大脑激活和功能有效连接的工具包。在这里,我们用MATLAB开发了一个用于fNIRS数据的大脑连接工具箱fNIRS_AT。该工具箱包含了近红外光谱数据预处理、图形绘制、脑连通性计算和统计分析等主要功能。在数据预处理模块中,采用差分路长因子(DPF)方法将近红外光谱光强转换为血流动力学参数,DPF值可根据光源波长和受试者年龄进行调整。在脑连通性计算模块中,包含了小世界属性和格兰杰因果关系。大脑激活和连通性的结果可以在工具箱中进行统计分析。通过友好的图形用户界面,fNIRS_AT允许研究人员以一种简单灵活的方式进行大脑激活和连接分析。该软件包将促进近红外光谱在大脑连接中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Brain Connectivity Toolbox for Functional Near-Infrared Spectroscopy Data
Functional near-infrared spectroscopy (fNIRS) is a promising and noninvasive optical functional neuroimaging method, and can also be a useful method in brain network researches. Functional connectivity and effective connectivity are two important analysis methods in brain connectionism. The available toolkits have greatly facilitated the preprocessing of fNIRS data and the task activation analysis. Nevertheless, toolkits that can assess brain activation and functional and effective connectivity simultaneously are still lacking at present. Here, we developed a brain connectivity toolbox for fNIRS data called fNIRS_AT with MATLAB. This toolbox includes the main functions of fNIRS data preprocessing, graphic plot, brain connectivity calculation, and statistical analysis. In the module of data preprocessing, NIRS light intensity can be converted into hemodynamic parameters using the differential pathlength factor (DPF) method, and the DPF values could be adjusted according to the light source wavelength and the subject's age. In the module of brain connectivity calculation, small-world properties and Granger causality are included. The brain activation and connectivity results can be statistically analyzed in the toolbox. Through the friendly graphical user interface, fNIRS_AT allows researchers to perform brain activation and connectivity analysis in an easy and flexible way. This software package will facilitate the application of NIRS in brain connectivity.
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