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首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >Visual and automatic investigation of epileptiform spikes in intracranial EEG recordings.
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Visual and automatic investigation of epileptiform spikes in intracranial EEG recordings.

机译:视觉和自动调查颅内脑电图记录中癫痫样突峰。

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摘要

PURPOSE: Performance of automatic spike-detection algorithms and interrater reliability of human EEG reviewers were investigated previously by using scalp EEG recordings. However, it is not known, whether the findings of these studies hold for intracranial recordings. To address this question, we analyzed spike detection in intracranial recordings by two human reviewers and three automatic systems covering major lines in the development of automatic spike-detection systems. METHODS: Intracranial recordings from subdural and intrahippocampal depth electrode contacts in seven patients were analyzed by two reviewers and three spike-detection systems: (a) The rule-based system by Gotman, (b) a two-stage system consisting of a linear predictor and a second rule-based stage, and (c) a system using wavelet coefficients of the intracranial EEG data. RESULTS: Agreement between the two human reviewers with respect to spike identification was <50%. The automatic systems achieved agreements of 24% (Gotman), 26% (wavelet detector), and 32% (two-stage system) with the individual human reviewers. In spite of the small proportion of agreements, the same anatomic regions were identified by human and automatic EEG analysis as generators for the majority of spikes. CONCLUSIONS: The poor agreement between the human EEG reviewers suggests that the definition of spikes and spike-like episodes in intracranial electrodes is far from unequivocal. Nevertheless, localizing information is highly consistent by either visual or automatic spike detection, independent of the algorithm used for automatic spike detection.
机译:目的:以前通过使用头皮脑电图记录调查了自动峰值检测算法的性能和人类脑电图审阅者的间间可靠性。但是,尚不清楚这些研究的结果是否适用于颅内记录。为了解决这个问题,我们分析了两位人类审阅者和三个自动系统在颅内记录中的峰值检测,这些系统涵盖了自动峰值检测系统开发中的主要领域。方法:由两名审阅者和三个峰值检测系统分析了七名患者硬膜下和海马内深度电极接触的颅内记录:(a)Gotman基于规则的系统,(b)由线性预测器组成的两阶段系统第二个基于规则的阶段,以及(c)使用颅内EEG数据的小波系数的系统。结果:两位人工审稿人之间关于尖峰识别的协议<50%。自动系统与个人审阅者达成的协议分别为24%(Gotman),26%(小波检测器)和32%(两阶段系统)。尽管协议的比例很小,但通过人工和自动脑电图分析将相同的解剖区域确定为大多数峰值的生成器。结论:人类脑电图检查者之间的一致意见表明,颅内电极中尖峰和尖峰样发作的定义远非明确。尽管如此,通过视觉或自动峰值检测,定位信息是高度一致的,而与用于自动峰值检测的算法无关。

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