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难治性癫痫中丘脑中央核深部脑刺激的丘脑-皮质网络:多模态成像分析

Thalamo-cortical network underlying deep brain stimulation of centromedian thalamic nuclei in intractable epilepsy: a multimodal imaging analysis.

作者信息

Kim Seong Hoon, Lim Sung Chul, Yang Dong Won, Cho Jeong Hee, Son Byung-Chul, Kim Jiyeon, Hong Seung Bong, Shon Young-Min

机构信息

Department of Neurology.

Department of Neurosurgery, Catholic Neuroscience Institute, College of Medicine, The Catholic University of Korea, Seoul.

出版信息

Neuropsychiatr Dis Treat. 2017 Oct 17;13:2607-2619. doi: 10.2147/NDT.S148617. eCollection 2017.

Abstract

OBJECTIVE

Deep brain stimulation (DBS) of the centromedian thalamic nucleus (CM) can be an alternative treatment option for intractable epilepsy patients. Since CM may be involved in widespread cortico-subcortical networks, identification of the cortical sub-networks specific to the target stimuli may provide further understanding on the underlying mechanisms of CM DBS. Several brain structures have distinguishing brain connections that may be related to the pivotal propagation and subsequent clinical effect of DBS.

METHODS

To explore core structures and their connections relevant to CM DBS, we applied electroencephalogram (EEG) and diffusion tensor imaging (DTI) to 10 medically intractable patients - three generalized epilepsy (GE) and seven multifocal epilepsy (MFE) patients unsuitable for resective surgery. Spatiotemporal activation pattern was mapped from scalp EEG by delivering low-frequency stimuli (5 Hz). Structural connections between the CM and the cortical activation spots were assessed using DTI.

RESULTS

We confirmed an average 72% seizure reduction after CM DBS and its clinical efficiency remained consistent during the observation period (mean 21 months). EEG data revealed sequential source propagation from the anterior cingulate, followed by the frontotemporal regions bilaterally. In addition, maximal activation was found in the left cingulate gyrus and the right medial frontal cortex during the right and left CM stimulation, respectively. From DTI data, we confirmed concrete structural connections between CM and those maximal activation spots identified from EEG data.

CONCLUSION

These results suggest that the anterior cingulate can be a core cortical structure for the bilateral propagation of CM stimulation. Our DTI findings also indicate that the propagation of CM stimulation may rely upon integrity of structural connections between CM and these key cortical regions. Structures and their connections found in this study may be relevant in the interpretation of the clinical outcomes of CM DBS.

摘要

目的

丘脑中央中核(CM)的深部脑刺激(DBS)可为难治性癫痫患者提供一种替代治疗选择。由于CM可能参与广泛的皮质-皮质下网络,识别特定于目标刺激的皮质子网可能有助于进一步理解CM DBS的潜在机制。几个脑结构具有独特的脑连接,这可能与DBS的关键传播及后续临床效果有关。

方法

为探索与CM DBS相关的核心结构及其连接,我们对10例药物难治性患者(3例全身性癫痫(GE)患者和7例不适于切除手术的多灶性癫痫(MFE)患者)应用了脑电图(EEG)和扩散张量成像(DTI)。通过施加低频刺激(5Hz)从头皮EEG绘制时空激活模式。使用DTI评估CM与皮质激活点之间的结构连接。

结果

我们证实CM DBS后平均癫痫发作减少72%,且在观察期(平均21个月)内其临床疗效保持一致。EEG数据显示从前扣带回开始的顺序性源传播,随后是双侧额颞叶区域。此外,在右侧和左侧CM刺激期间,分别在左侧扣带回和右侧内侧前额叶皮质发现最大激活。从DTI数据中,我们证实了CM与从EEG数据中识别出的那些最大激活点之间的具体结构连接。

结论

这些结果表明前扣带回可能是CM刺激双侧传播的核心皮质结构。我们的DTI研究结果还表明,CM刺激的传播可能依赖于CM与这些关键皮质区域之间结构连接的完整性。本研究中发现的结构及其连接可能与解释CM DBS的临床结果相关。

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