首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Relation between functional magnetic resonance imaging (fMRI) and single neuron local field potential (LFP) and electrocorticography (ECoG) activity in human cortex
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Relation between functional magnetic resonance imaging (fMRI) and single neuron local field potential (LFP) and electrocorticography (ECoG) activity in human cortex

机译:功能性磁共振成像(fmRI)和单神经元局部场电位(LFp)和脑电图(脑电图)活性在人皮质之间的关系

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摘要

The relation between changes in the blood oxygen dependent metabolic changes imaged by functional magnetic resonance imaging (fMRI) and neural events directly recorded from human cortex from single neurons, local field potentials (LFPs) and electrocorticogram (ECoG) is critically reviewed, based on the published literature including findings from the authors' laboratories. All these data are from special populations, usually patients with medically refractory epilepsy, as this provides the major opportunity for direct cortical neuronal recording in humans. For LFP and ECoG changes are often sought in different frequency bands, for single neurons in frequency of action potentials. Most fMRI studies address issues of functional localization. The relation of those findings to localized changes in neuronal recordings in humans has been established in several ways. Only a few studies have directly compared changes in activity from the same sites in the same individual, using the same behavioral measure. More often the comparison has been between fMRI and electrophysiologic changes in populations recorded from the same functional anatomic system as defined by lesion effects; in a few studies those systems have been defined by fMRI changes such as the “default” network. The fMRI-electrophysiologic relationships have been evaluated empirically by colocalization of significant changes, and by quantitative analyses, often multiple linear regression. There is some evidence that the fMRI-electrophysiology relationships differ in different cortical areas, particularly primary motor and sensory cortices compared to association cortex, but also within areas of association cortex. Although crucial for interpretation of fMRI changes as reflecting neural activity in human cortex, controversy remains as to these relationships. Supported by: Dutch Technology Foundation and University of Utrecht Grant UGT7685, ERC-Advanced grant 320708 (NR) and NIH grant NS065186 (JO)
机译:根据功能性磁共振成像(fMRI)成像,血氧依赖性代谢变化的变化与人类皮层直接记录的单个神经元的神经事件,局部场电势(LFPs)和皮质电图(ECoG)之间的关系被严格审查。已发表的文献包括作者实验室的发现。所有这些数据均来自特殊人群,通常是患有难治性癫痫病的患者,因为这为在人类中直接进行皮层神经元记录提供了主要机会。对于LFP和ECoG,对于单个神经元,在动作电位的频率中通常寻求在不同的频带中进行更改。大多数功能磁共振成像研究都解决了功能定位的问题。这些发现与人类神经元记录的局部变化之间的关系已经以多种方式建立。只有少数研究使用相同的行为指标直接比较了同一个人中同一地点的活动变化。更常见的是,在功能磁共振成像和由病变效应定义的同一功能解剖系统记录的人群电生理变化之间进行比较。在一些研究中,这些系统是通过功能磁共振成像的变化定义的,例如“默认”网络。通过显着变化的共定位,并通过定量分析(通常为多元线性回归),通过经验评估了fMRI与电生理的关系。有证据表明,与缔合皮质相比,fMRI-电生理关系在不同的皮质区域,特别是初级运动皮层和感觉皮层中有所不同,但在缔合皮层区域中也不同。尽管对于解释功能磁共振成像的变化至关重要,因为它反映了人类皮层的神经活动,但关于这些关系仍存在争议。支持:荷兰技术基金会和乌得勒支大学授予UGT7685,ERC-Advanced授予320708(NR)和NIH授予NS065186(JO)

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