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人脑颅内脑电图与功能磁共振成像记录之间映射关系的测量。

Measurement of the Mapping between Intracranial EEG and fMRI Recordings in the Human Brain.

作者信息

Carmichael David W, Vulliemoz Serge, Murta Teresa, Chaudhary Umair, Perani Suejen, Rodionov Roman, Rosa Maria Joao, Friston Karl J, Lemieux Louis

机构信息

Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London SE1 7EH, UK.

Developmental Imaging and Biophysics section, UCL Great Ormond Street Institute of Child Health, London WC1N 1EH, UK.

出版信息

Bioengineering (Basel). 2024 Feb 27;11(3):224. doi: 10.3390/bioengineering11030224.

Abstract

There are considerable gaps in our understanding of the relationship between human brain activity measured at different temporal and spatial scales. Here, electrocorticography (ECoG) measures were used to predict functional MRI changes in the sensorimotor cortex in two brain states: at rest and during motor performance. The specificity of this relationship to spatial co-localisation of the two signals was also investigated. We acquired simultaneous ECoG-fMRI in the sensorimotor cortex of three patients with epilepsy. During motor activity, high gamma power was the only frequency band where the electrophysiological response was co-localised with fMRI measures across all subjects. The best model of fMRI changes across states was its principal components, a parsimonious description of the entire ECoG spectrogram. This model performed much better than any others that were based either on the classical frequency bands or on summary measures of cross-spectral changes. The region-specific fMRI signal is reflected in spatially and spectrally distributed EEG activity.

摘要

我们对在不同时间和空间尺度上测量的人类大脑活动之间的关系的理解存在相当大的差距。在这里,皮层脑电图(ECoG)测量被用于预测两种脑状态下感觉运动皮层的功能磁共振成像(fMRI)变化:静息状态和运动表现期间。还研究了这种关系对两种信号空间共定位的特异性。我们在三名癫痫患者的感觉运动皮层中同时采集了ECoG-fMRI数据。在运动活动期间,高伽马功率是唯一在所有受试者中电生理反应与fMRI测量共定位的频段。跨状态fMRI变化的最佳模型是其主成分,这是对整个ECoG频谱图的简洁描述。该模型的表现远优于基于经典频段或交叉谱变化汇总测量的任何其他模型。区域特异性fMRI信号反映在空间和频谱分布的脑电图活动中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/563c/10968112/a6045075a249/bioengineering-11-00224-g001.jpg

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