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Detection of fast oscillating magnetic fields using dynamic multiple TR imaging and Fourier analysis

机译:使用动态多重TR成像和傅里叶分析检测快速振荡磁场

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摘要

Neuronal oscillations produce oscillating magnetic fields. There have been trials to detect neuronal oscillations using MRI, but the detectability in in vivo is still in debate. Major obstacles to detecting neuronal oscillations are (i) weak amplitudes, (ii) fast oscillations, which are faster than MRI temporal resolution, and (iii) random frequencies and on/off intervals. In this study, we proposed a new approach for direct detection of weak and fast oscillating magnetic fields. The approach consists of (i) dynamic acquisitions using multiple times to repeats (TRs) and (ii) an expanded frequency spectral analysis. Gradient echo echo-planar imaging was used to test the feasibility of the proposed approach with a phantom generating oscillating magnetic fields with various frequencies and amplitudes and random on/off intervals. The results showed that the proposed approach could precisely detect the weak and fast oscillating magnetic fields with random frequencies and on/off intervals. Complex and phase spectra showed reliable signals, while no meaningful signals were observed in magnitude spectra. A two-TR approach provided an absolute frequency spectrum above Nyquist sampling frequency pixel by pixel with no a priori target frequency information. The proposed dynamic multiple-TR imaging and Fourier analysis are promising for direct detection of neuronal oscillations and potentially applicable to any pulse sequences.
机译:神经元振荡产生振荡磁场。已经进行了使用MRI检测神经元振荡的试验,但是体内的可检测性仍存在争议。检测神经元振荡的主要障碍是(i)振幅较弱;(ii)快速振荡,其速度快于MRI的时间分辨率;以及(iii)随机频率和开/关间隔。在这项研究中,我们提出了一种直接检测弱和快速振荡磁场的新方法。该方法包括(i)使用多次重复(TR)的动态采集,以及(ii)扩展频谱分析。梯度回波回波平面成像技术被用于测试所提出的方法的可行性,该方法具有幻像产生具有各种频率和振幅以及随机开/关间隔的振荡磁场。结果表明,所提出的方法可以精确地检测具有随机频率和开/关间隔的弱和快速振荡磁场。复数和相位谱显示可靠的信号,而幅度谱中没有观察到有意义的信号。两种TR方法在没有先验目标频率信息的情况下逐个像素提供了高于奈奎斯特采样频率的绝对频谱。提出的动态多重TR成像和傅里叶分析有望直接检测神经元振荡,并可能适用于任何脉冲序列。

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  • 年(卷),期 -1(13),1
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  • 页码 e0189916
  • 总页数 17
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