Complex Valued Equivalent-Current Dipole Fits for MEG Responses

Yadong Wang, N. Ahmar, Juanjuan Xiang, Ling Ma, D. Poeppel, J. Simon
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引用次数: 1

Abstract

Complex numbers appear naturally in biological systems in the context of the Fourier transform. In particular, physiological magnetic field data from whole head magnetoencephalography (MEG) is complex after a Fourier transform. The whole-head MEG steady state response (SSR) to a stationary modulated stimulus results in a complex magnetic field for each MEG channel, from the frequency corresponding to that of the stimulus modulation. This complex data set is used to estimate the neural current sources generating the magnetic field, naturally leading to complex current sources. We show that standard inverse methods of estimating the current sources, such as the single equivalent-current dipole, generalize to complex sources in a useful and straightforward manner. The usage and utility of the complex magnetic field and the complex neural current source are demonstrated using examples from auditory SSR experiments
MEG响应的复值等效电流偶极子拟合
在傅里叶变换的背景下,复数自然地出现在生物系统中。特别是,全脑脑磁图(MEG)的生理磁场数据在傅里叶变换后是复杂的。全头部脑磁图稳态响应(SSR)对一个稳态调制刺激产生一个复杂的磁场在每个脑磁图通道,从对应的频率的刺激调制。这个复杂的数据集用于估计产生磁场的神经电流源,自然导致复杂的电流源。我们证明了估计电流源的标准逆方法,如单等效电流偶极子,以一种有用和直接的方式推广到复杂的源。以听觉SSR实验为例,说明了复合磁场和复合神经电流源的用法和实用性
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