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多模态神经成像方法的整合:同步脑电图-功能磁共振成像临床应用的基本原理。

Integration of multimodal neuroimaging methods: a rationale for clinical applications of simultaneous EEG-fMRI.

作者信息

Vitali Piera, Di Perri Carol, Vaudano Anna Elisabetta, Meletti Stefano, Villani Flavio

出版信息

Funct Neurol. 2015 Jan-Mar;30(1):9-20.

Abstract

Functional magnetic resonance imaging (fMRI), which has high spatial resolution, is increasingly used to evaluate cerebral functions in neurological and psychiatric diseases. The main limitation of fMRI is that it detects neural activity indirectly, through the associated slow hemodynamic variations. Because neurovascular coupling can be regionally altered by pathological conditions or drugs, fMRI responses may not truly reflect neural activity. Electroencephalography (EEG) recordings, which directly detect neural activity with optimal temporal resolution, can now be obtained during fMRI data acquisition. Therefore, there is a growing interest in combining the techniques to obtain simultaneous EEG-fMRI recordings. The EEG-fMRI approach has several promising clinical applications. The first is the detection of cortical areas involved in interictal and ictal epileptic activity. Second, combining evoked potentials with fMRI could be an accurate way to study eloquent cortical areas for the planning of neurosurgery or rehabilitation, circumventing the above-mentioned limitation of fMRI. Finally, the use of this approach to evaluate the functional connectivity of resting-state networks would extend the applications of EEG-fMRI to uncooperative or unconscious patients. Integration of multimodal neuroimaging methods: a rationale for clinical applications of simultaneous EEG-fMRI.

摘要

功能磁共振成像(fMRI)具有高空间分辨率,越来越多地用于评估神经和精神疾病中的脑功能。fMRI的主要局限性在于它通过相关的缓慢血液动力学变化间接检测神经活动。由于神经血管耦合可能会因病理状况或药物而发生局部改变,fMRI反应可能无法真实反映神经活动。脑电图(EEG)记录可直接检测神经活动,具有最佳的时间分辨率,现在可以在fMRI数据采集期间获得。因此,人们越来越有兴趣将这些技术结合起来,以获得同步的EEG-fMRI记录。EEG-fMRI方法有几个有前景的临床应用。第一个是检测发作间期和发作期癫痫活动所涉及的皮质区域。其次,将诱发电位与fMRI相结合可能是一种准确的方法,用于研究明确的皮质区域,以规划神经外科手术或康复治疗,从而规避fMRI上述的局限性。最后,使用这种方法评估静息态网络的功能连接性将把EEG-fMRI的应用扩展到不合作或无意识的患者。多模态神经成像方法的整合:同步EEG-fMRI临床应用的基本原理。

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