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首页> 外文期刊>Journal of Clinical Neurophysiology >Simultaneous EEG/functional magnetic resonance imaging at 4 Tesla: correlates of brain activity to spontaneous alpha rhythm during relaxation.
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Simultaneous EEG/functional magnetic resonance imaging at 4 Tesla: correlates of brain activity to spontaneous alpha rhythm during relaxation.

机译:在4特斯拉同时进行脑电图/功能磁共振成像:放松过程中大脑活动与自发性α节奏相关。

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SUMMARY:: Simultaneous EEG and functional magnetic resonance imaging have been applied to the study of brain states associated with alpha waves using a magnetic field strength of 1.5 Tesla and has been shown in recent years to be feasible up to 3 Tesla for other applications. This study demonstrates this technique's continued viability at a field strength of 4 Tesla, affording a proportionally greater sensitivity to changes in Blood Oxygen Level Dependent (BOLD) signal. In addition, for the study of alpha correlations, the authors used a larger number of subjects and scanning sessions than in the previous work. Random effects group regression analysis of 35 EEG/functional magnetic resonance imaging sessions against occipital alpha magnitude in a relaxed state detected bilateral widespread activation of dorsal thalamus and portions of the anterior cingulate and cerebellum. In the same group analysis, deactivations arose predominantly in the fusiform and adjacent visual association areas with a small activation cluster also detected in dorsolateral prefrontal cortex. This pattern is consistent with a correspondence between alpha magnitude variations and resting state network dynamics ascertained by recent studies of low frequency spontaneous BOLD fluctuations. The central role of the thalamus in resting state networks correlated with alpha activity is highlighted. Demonstrating the applicability of simultaneous EEG/functional magnetic resonance imaging up to 4 Tesla is particularly important for clinically relevant research involving challenging spontaneous EEG abnormalities, such as those of epilepsy.
机译:摘要::同时脑电图和功能磁共振成像已被用于研究使用1.5特斯拉的磁场强度与阿尔法波相关的大脑状态,并且近年来已证明对于其他应用,可行的是高达3特斯拉是可行的。这项研究证明了该技术在4特斯拉场强下的持续活力,从而对血氧水平依赖性(BOLD)信号的变化成比例地提高了敏感性。另外,为了研究α相关性,与以前的工作相比,作者使用了大量的主题和扫描会话。针对放松状态下的枕叶α幅度的35个脑电图/功能磁共振成像会议的随机效应组回归分析检测到了背侧丘脑以及前扣带回和小脑部分的双边广泛激活。在同一组分析中,失活主要发生在梭形和邻近的视觉联想区域,在背外侧前额叶皮层中也检测到一个小的激活簇。这种模式与最近对低频自发性BOLD波动的研究确定的α幅度变化和静止状态网络动力学之间的对应关系一致。突出了丘脑在与α活性相关的静止状态网络中的核心作用。证明同时进行多达4特斯拉的脑电图/功能磁共振成像的适用性对于涉及自发性脑电图异常(例如癫痫)的临床相关研究尤为重要。

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