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首页> 外文期刊>Surgical neurology >Three-dimensional localization of subclinical ictal activity by magnetoencephalography: correlation with invasive monitoring.
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Three-dimensional localization of subclinical ictal activity by magnetoencephalography: correlation with invasive monitoring.

机译:脑磁描记法在亚临床小肠活动的三维定位:与侵入性监测的相关性。

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BACKGROUND: Although magnetoencephalography (MEG) provides accurate information on the spatial distribution and temporal patterns of the "interictal" epileptic activities, it is interictal in nature and therefore also prone to all the problems associated with interictal data. METHODS: We investigated the subclinical "ictal" epileptic activity with a 37-channel, large-array biomagnetometer and mapped the data onto a three-dimensional image in a patient with intractable frontal lobe epilepsy. Dipole source localization was calculated based on magnetic fields for both the interictal and subclinical ictal activities. RESULTS: The current dipoles of the interictal MEG spikes (MEG irritative zone) were revealed to be scattered in the left anterior frontal lobe, whereas that of the subclinical ictal onset (MEG subclinical ictal onset zone) was surrounded by the interictal dipole cluster. The dipole source localization of the propagating activities was not calculated with a single dipole model. The MEG subclinical ictal onset zone correlated well with the ictal onset zone subsequently recorded by invasive subdural electrophysiological monitoring. After multiple subpial transection of the deduced epileptogenic area, a dramatic reduction of the seizures occurred. CONCLUSION: These results illustrate the potential of MEG for localizing the epileptogenic foci with high spatial and temporal resolution.
机译:背景:尽管脑磁图(MEG)提供有关“发作性”癫痫活动的空间分布和时间模式的准确信息,但它本质上是发作性的,因此也容易出现与发作性数据相关的所有问题。方法:我们使用37通道大阵列生物磁力仪调查了亚临床的“发作性”癫痫活动,并将该数据映射到患有难治性额叶癫痫患者的三维图像上。偶极子源定位是基于磁场来计算的临床和临床外活动。结果:目前的间质MEG尖峰(MEG刺激区)的偶极散布在左前额叶中,而亚临床发作(MEG亚临床发作区)被偶极间偶极簇包围。没有使用单个偶极子模型来计算传播活动的偶极子源定位。 MEG亚临床发作起始区与随后通过侵入性硬膜下电生理监测记录的发作起始区相关性很好。在推演的癫痫发生区多次皮下横断后,癫痫发作明显减少。结论:这些结果说明了MEG在高时空分辨率下定位致癫痫灶的潜力。

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