首页> 外文会议>Neural Engineering, 2009. NER '09 >Application of matched-filtering to extract EEG features and decouple signal contributions from multiple seizure foci in brain malformations
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Application of matched-filtering to extract EEG features and decouple signal contributions from multiple seizure foci in brain malformations

机译:匹配滤波在脑畸形中提取癫痫脑电特征并分离多个癫痫发作信号贡献的应用

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Developmental brain malformations often cause intractable and in many cases generalized and/or multifocal seizures. Surgical intervention is not possible in these cases as it is difficult to isolate the epileptogenic foci. Scalp EEG signals recorded during such seizures include coupled contributions from different sources. If it was possible to decouple these contributions based on differences in both their signatures and inter-arrival times at different electrodes, it would subsequently be possible to estimate the locations of the seizure foci. For this purpose, we applied matched filtering to scalp EEG data from 3 patients with multifocal seizures, using patient-specific source-related short EEG segments as the template waveforms. These segments were assumed to be seizure-related based on distinct sets of inter-arrival times at different channels and alternating signal polarities. We present preliminary results and demonstrate that matched filtering can be successfully applied to extract decoupled signal components from the EEG, generated by potentially distinct sources, and thus with distinct inter-arrival times but partially overlapping spectra.
机译:发育性脑畸形通常会引起顽固性发作,在许多情况下还会引起全身性发作和/或多灶性癫痫发作。在这些情况下,不可能进行手术干预,因为很难分离出致癫痫灶。在此类癫痫发作中记录的头皮脑电信号包括来自不同来源的耦合贡献。如果有可能基于它们在不同电极上的特征和到达时间之间的差异来分离这些贡献,那么随后将有可能估计癫痫灶的位置。为此,我们使用与患者相关的与源有关的短EEG短片段作为模板波形,将匹配过滤应用于3例多灶性癫痫发作患者的头皮EEG数据。根据不同通道的到来时间的不同集合和交替的信号极性,假定这些片段与癫痫发作有关。我们目前的初步结果,并证明匹配的滤波可以成功地应用于从脑电图中提取出解耦的信号分量,这些分量是由可能不同的信号源产生的,因此具有不同的到达时间但频谱部分重叠。

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