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癫痫的连续皮层刺激的神经生理学效应-棘波和自发性 ECoG 活动。

Neurophysiological effects of continuous cortical stimulation in epilepsy - Spike and spontaneous ECoG activity.

机构信息

Clinical Neurophysiology, Karolinska University Hospital, Stockholm, Sweden; Department of Clinical Neuroscience, Karolinska Institutet, Stockholm, Sweden.

Department of Neurology, Mayo Clinic, 200 1st St SW, Rochester, MN 55905, Sweden.

出版信息

Clin Neurophysiol. 2019 Jan;130(1):38-45. doi: 10.1016/j.clinph.2018.10.009. Epub 2018 Nov 14.

Abstract

OBJECTIVE

The effect of continuous subthreshold cortical stimulation (CSCS) over the seizure onset zone (SOZ) in epilepsy was analyzed to delineate the affected physiological processes.

METHOD

ECoG data was recorded over SOZ and adjacent regions in patients (n = 7) with refractory-epilepsy. Data was reviewed before and during 2 Hz cortical electrical stimulation. Group differences were estimated using ANOVA and correlation with Pearson's r.

RESULTS

CSCS reduced background ECoG power at SOZ (p < 0.05), increased spectral coherence (p < 0.05) and reduced spike rate (p < 0.01) over all recorded sites. Spectral power and coherence (p < 0.01) correlated with spike rate at SOZ but not with each other at any location. Spike morphology correlated with spike-rate over all recorded sites (p < 0.0001) and with spectral power and coherence at SOZ (p < 0.01).

CONCLUSION

This study shows changes in cortical electrophysiology during CSCS over the SOZ where spike rate reduction correlated with two independent electrophysiological parameters, background power and coherence. These results suggest the possibility of a causal relationship between spectral power, coherence and interictal spikes which may be related to seizure rate.

SIGNIFICANCE

Improved understanding of the effect of electrical stimulation on epileptic tissue could suggest improvements in stimulation paradigms to reduce seizure frequency.

摘要

目的

分析连续阈下皮质刺激(CSCS)对癫痫发作起始区(SOZ)的影响,以描绘受影响的生理过程。

方法

在难治性癫痫患者(n=7)的 SOZ 和邻近区域记录 ECoG 数据。在 2Hz 皮质电刺激之前和期间审查数据。使用 ANOVA 估计组间差异,并与 Pearson r 进行相关性分析。

结果

CSCS 降低了 SOZ 上的背景 ECoG 功率(p<0.05),增加了所有记录部位的频谱相干性(p<0.05)并降低了尖峰率(p<0.01)。SOZ 上的尖峰率与频谱功率和相干性(p<0.01)相关,但在任何部位彼此不相关。尖峰形态与所有记录部位的尖峰率相关(p<0.0001),与 SOZ 上的频谱功率和相干性相关(p<0.01)。

结论

本研究表明 CSCS 期间 SOZ 上皮质电生理学的变化,其中尖峰率降低与两个独立的电生理参数(背景功率和相干性)相关。这些结果表明,频谱功率、相干性和发作间棘波之间可能存在因果关系的可能性,这可能与发作率有关。

意义

对电刺激对癫痫组织影响的理解的提高可能会提出改进刺激范式以降低发作频率的建议。

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