脑磁图
计算机科学
组分(热力学)
人工神经网络
立体脑电图
人工智能
脑电图
比例(比率)
模式
大脑活动与冥想
神经科学
心理学
物理
社会学
癫痫外科
热力学
量子力学
社会科学
作者
Paula Sanz‐Leon,S. A. Knock,Andreas Spiegler,Viktor Jirsa
出处
期刊:NeuroImage
[Elsevier]
日期:2015-01-13
卷期号:111: 385-430
被引量:371
标识
DOI:10.1016/j.neuroimage.2015.01.002
摘要
In this article, we describe the mathematical framework of the computational model at the core of the tool The Virtual Brain (TVB), designed to simulate collective whole brain dynamics by virtualizing brain structure and function, allowing simultaneous outputs of a number of experimental modalities such as electro- and magnetoencephalography (EEG, MEG) and functional Magnetic Resonance Imaging (fMRI). The implementation allows for a systematic exploration and manipulation of every underlying component of a large-scale brain network model (BNM), such as the neural mass model governing the local dynamics or the structural connectivity constraining the space time structure of the network couplings. Here, a consistent notation for the generalized BNM is given, so that in this form the equations represent a direct link between the mathematical description of BNMs and the components of the numerical implementation in TVB. Finally, we made a summary of the forward models implemented for mapping simulated neural activity (EEG, MEG, sterotactic electroencephalogram (sEEG), fMRI), identifying their advantages and limitations.
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