单脉冲电刺激诱发的皮质-皮质磁反应动力学。

IF 6.6 1区 医学 Q1 CLINICAL NEUROLOGY Epilepsia Pub Date : 2024-12-06 DOI:10.1111/epi.18183
Odile Feys, Sophie Schuind, Claudine Sculier, Estelle Rikir, Benjamin Legros, Nicolas Gaspard, Vincent Wens, Xavier De Tiège
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引用次数: 0

摘要

目的:颅内单脉冲电刺激可诱发皮质-皮质诱发电位。他们对颅内脑电图的调查由于电极数量有限和选择的位置而有偏差,这可以通过同时进行无创全头皮记录来避免。本研究旨在探讨脑磁图(MEG)表征皮质-皮质诱发场(CCEFs)的能力,以及癫痫发生区(EZ)和非癫痫发生区(即非参与[NIZ])之间的有效连通性。方法:对10例难治性局灶性癫痫患者进行301次脉冲(0.9 Hz, 120 s)电刺激。采用独立分量分析对脑电信号进行去噪、epoch、平均和分解。检测到显著的响应偏转和显著的源发生器。比较含有5个以上SPES的脑区不同皮层/皮层下结构之间的峰值潜伏期/振幅,以及脑区与相应脑区结构之间的峰值潜伏期/振幅。结果:MEG检测并定位了多态/多相CCEFs,包括1至8个显著的连续偏转。脑区内CCEFs的潜伏期和振幅随受刺激脑结构的不同而有显著差异。与相应的NIZ相比,颞外EZ内的SPES表现出CCEF潜伏期的延迟,而颞内EZ内的SPES表现出CCEF振幅的降低。与NIZ内的SPES相比,EZ内的SPES在受刺激叶内引起的CCEFs发生率显著更高。意义:本研究揭示了在nz和EZ内具有复杂时空动态的多态CCEFs。它突出了致痫网络有效连接的显著差异。因此,这些皮质-皮质诱发反应可能有助于增加颅内记录的产量。
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Dynamics of magnetic cortico-cortical responses evoked by single-pulse electrical stimulation.

Objective: Intracranial single-pulse electrical stimulation (SPES) can elicit cortico-cortical evoked potentials. Their investigation with intracranial EEG is biased by the limited number and selected location of electrodes, which could be circumvented by simultaneous non-invasive whole-scalp recording. This study aimed at investigating the ability of magnetoencephalography (MEG) to characterize cortico-cortical evoked fields (CCEFs) and effective connectivity between the epileptogenic zone (EZ) and non-epileptogenic zone (i.e., non-involved [NIZ]).

Methods: A total of 301 SPES trains (at 0.9 Hz during 120 s) were performed in 10 patients with refractory focal epilepsy. MEG signals were denoised, epoched, averaged, and decomposed using independent component analysis. Significant response deflections and significant source generators were detected. Peak latency/amplitude were compared between each different cortical/subcortical structure of the NIZ containing more than five SPES, and then between the EZ and corresponding brain structures in the NIZ.

Results: MEG detected and localized polymorphic/polyphasic CCEFs, including one to eight significant consecutive deflections. The latency and amplitude of CCEFs within the NIZ differed significantly depending on the stimulated brain structure. Compared with the corresponding NIZ, SPES within the extratemporal EZ demonstrated delayed CCEF latency, whereas SPES within the temporal EZ showed decreased CCEF amplitude. SPES within the EZ elicited a significantly higher rate of CCEFs within the stimulated lobe compared with those within the NIZ.

Significance: This study reveals polymorphic CCEFs with complex spatiotemporal dynamics both within the NIZ and EZ. It highlights significant differences in effective connectivity of the epileptogenic network. These cortico-cortical evoked responses could thus contribute to increasing the yield of intracranial recordings.

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来源期刊
Epilepsia
Epilepsia 医学-临床神经学
CiteScore
10.90
自引率
10.70%
发文量
319
审稿时长
2-4 weeks
期刊介绍: Epilepsia is the leading, authoritative source for innovative clinical and basic science research for all aspects of epilepsy and seizures. In addition, Epilepsia publishes critical reviews, opinion pieces, and guidelines that foster understanding and aim to improve the diagnosis and treatment of people with seizures and epilepsy.
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