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首页> 外文期刊>Journal of Neurophysiology >Methods for Determining Frequency- and Region-Dependent Relationships Between Estimated LFPs and BOLD Responses in Humans.
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Methods for Determining Frequency- and Region-Dependent Relationships Between Estimated LFPs and BOLD Responses in Humans.

机译:确定人类中估计的LFP和BOLD响应之间的频率和区域相关关系的方法。

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摘要

The relationship between electrophysiological and functional magnetic resonance imaging (fMRI) signals remains poorly understood. To date, studies have required invasive methods and have been limited to single functional regions and thus cannot account for possible variations across brain regions. Here we present a method that uses fMRI data and singe-trial electroencephalography (EEG) analyses to assess the spatial and spectral dependencies between the blood-oxygenation-level-dependent (BOLD) responses and the noninvasively estimated local field potentials (eLFPs) over a wide range of frequencies (0-256 Hz) throughout the entire brain volume. This method was applied in a study where human subjects completed separate fMRI and EEG sessions while performing a passive visual task. Intracranial LFPs were estimated from the scalp-recorded data using the ELECTRA source model. We compared statistical images from BOLD signals with statistical images of each frequency of the eLFPs. In agreement with previous studies in animals, we found a significant correspondence between LFP and BOLD statistical images in the gamma band (44-78 Hz) within primary visual cortices. In addition, significant correspondence was observed at low frequencies (<14 Hz) and also at very high frequencies (>100 Hz). Effects within extrastriate visual areas showed a different correspondence that not only included those frequency ranges observed in primary cortices but also additional frequencies. Results therefore suggest that the relationship between electrophysiological and hemodynamic signals thus might vary both as a function of frequency and anatomical region.
机译:电生理和功能磁共振成像(fMRI)信号之间的关系仍然知之甚少。迄今为止,研究已要求采用侵入性方法,并且仅限于单个功能区域,因此无法说明整个大脑区域的可能差异。在这里,我们提出了一种使用功能磁共振成像数据和单次脑电图(EEG)分析的方法,以评估血液氧合水平依赖性(BOLD)反应与非侵入性估计局部场电势(eLFP)之间的空间和光谱依赖性。整个大脑体积的频率范围很广(0-256 Hz)。该方法在一项研究中得到了应用,在该研究中,人类受试者在执行被动视觉任务的同时分别完成了功能磁共振成像和脑电图会议。使用ELECTRA源模型,根据头皮记录的数据估算颅内LFP。我们将来自BOLD信号的统计图像与eLFP各个频率的统计图像进行了比较。与先前在动物中的研究一致,我们在主要视觉皮层内的gamma波段(44-78 Hz)中发现了LFP和BOLD统计图像之间的显着对应关系。此外,在低频(<14 Hz)和非常高的频率(> 100 Hz)下都观察到明显的对应关系。在超视域内的效果显示出不同的对应关系,不仅包括在初级皮层中观察到的那些频率范围,还包括其他频率。因此,结果表明,电生理信号和血液动力学信号之间的关系可能随频率和解剖区域而变化。

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