首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Application of Magnetoencephalography in Epilepsy Patients with Widespread Spike or Slow-wave Activity.
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Application of Magnetoencephalography in Epilepsy Patients with Widespread Spike or Slow-wave Activity.

机译:脑磁图在癫痫广泛发作或慢波活动患者中的应用。

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Summary: Purpose: To examine whether magnetoencephalography (MEG) can be used to determine patterns of brain activity underlying widespread paroxysms of epilepsy patients, thereby extending the applicability of MEG to a larger population of epilepsy patients. Methods: We studied two children with symptomatic localization-related epilepsy. Case 1 had widespread spikes in EEG with an operation scar from a resection of a brain tumor; Case 2 had hemispheric slow-wave activity in EEG with sensory auras. MEG was collected with a 204-channel helmet-shaped sensor array. Dynamic statistical parametric maps (dSPMs) were constructed to estimate the cortical distribution of interictal discharges for these patients. Equivalent current dipoles (ECDs) also were calculated for comparison with the results of dSPM. Results: In case 1 with widespread spikes, dSPM presented the major activity at the vicinity of the operation scar in the left frontal lobe at the peak of the spikes, and some activities were detected in the left temporal lobe just before the peak in some spikes. In case 2 with hemispheric slow waves, the most active area was located in the left parietal lobe, and additional activity was seen at the ipsilateral temporal and frontal lobes in dSPM. The source estimates correlated well with the ictal manifestation and interictal single-photon emission computed tomography (SPECT) findings for this patient. In comparison with the results of ECDs, ECDs could not express a prior activity at the left temporal lobe in case 1 and did not model well the MEG data in case 2. Conclusions: We suggest that by means of dSPM, MEG is useful for presurgical evaluation of patients, not only with localized epileptiform activity, but also with widespread spikes or slow waves, because it requires no selections of channels and no time-point selection.
机译:摘要:目的:检查磁脑图(MEG)是否可用于确定癫痫患者广泛发作的脑活动模式,从而将MEG的适用性扩展到更大的癫痫患者群体。方法:我们研究了两个有症状的定位相关性癫痫的儿童。病例1的脑电图有广泛的峰值,并有切除脑瘤的手术疤痕。病例2在具有感觉先兆的脑电图中具有半球慢波活动。 MEG是使用204通道头盔状传感器阵列收集的。构建动态统计参数图(dSPM)以估计这些患者的发作间期皮质分布。还计算了等效电流偶极子(ECD),以与dSPM的结果进行比较。结果:在案例1中出现了广泛的尖峰,dSPM在尖峰的峰值处表现出左额叶手术瘢痕附近的主要活动,并且在某些尖峰的峰值之前,左侧颞叶中发现了一些活动。在半球慢波的情况2中,最活跃的区域位于左顶叶,并且在dSPM的同侧颞叶和额叶处看到了额外的活动。来源估计与该患者的发作期表现和发作期单光子发射计算机断层扫描(SPECT)结果相关性很好。与ECD的结果相比,在1例中,ECD不能在左颞叶表达先前的活动,而在2例中,EMD不能很好地模拟MEG数据。结论:我们建议通过dSPM,MEG可用于外科手术评估患者,不仅具有局部癫痫样活动,而且具有广泛的尖峰或慢波,因为它不需要选择通道,也不需要选择时间点。

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