首页> 外文会议>International Conference on Advances in Biomedical Engineering >Reduction of stimulus artifacts in Ictal EEG recordings during electroconvulsive therapy
【24h】

Reduction of stimulus artifacts in Ictal EEG recordings during electroconvulsive therapy

机译:减少电惊厥治疗过程中眼部脑电图记录中的刺激伪影

获取原文

摘要

Electroconvulsive therapy (ECT) is a common clinical tool used for alleviating drug-resistant depression. During ECT, an electrode pair delivers few seconds of repetitive large-amplitude brief electric current pulses onto the patient's scalp that trigger brief ictal seizures in the underlying brain networks, which in turn promote reduction of depression symptoms. ECT therapeutic efficacy depends on the initiation location of a seizure and its propagation patterns. Accordingly, it is very desirable to utilize multichannel EEG recordings to understand how seizures vary with parameters related to electrode configuration (e.g. location, size) and current (e.g. amplitude, polarity). However, a major hurdle to obtaining clear recordings during a seizure (ictal activity, ~ 100 μv) are the long-lasting (6-8 seconds) very large amplitude (~ 100 mV) artifacts created by the stimulation electrodes. The disparity in signal-to-noise amplitude during an artifact (~ 1/1000) constitutes a major challenge to common signal conditioning and artifact removal tools. We here propose a multiple stage algorithm for detecting frequency coherences in hidden ictal EEG signals. The algorithm exploits both temporal information and spatial correlation patterns among affected electrode to remove major artifact components. We present a simulated example to verify the efficacy of our method as well as some preliminary results on actual EEG data.
机译:电抽搐疗法(ECT)是用于缓解耐药性抑郁症的常见临床工具。在ECT期间,电极对向患者的头皮传递几秒钟的重复大振幅短暂电流脉冲,从而触发基础脑网络短暂发作发作,进而促进抑郁症状的减轻。 ECT的治疗功效取决于癫痫发作的起始部位及其传播方式。因此,非常需要利用多通道EEG记录来了解癫痫发作如何随与电极配置(例如位置,大小)和电流(例如幅度,极性)有关的参数而变化。但是,在癫痫发作期间获得清晰记录的主要障碍(发作时间约为100μv)是刺激电极产生的持续时间很长(6-8秒),振幅很大(约100 mV)的伪影。伪像期间的信噪幅度差异(约1/1000)构成了对常见信号调理和伪像去除工具的重大挑战。我们在这里提出了一种多级算法,用于检测隐藏的Ital EEG信号中的频率相干性。该算法利用受影响电极之间的时间信息和空间相关性模式来去除主要的伪影分量。我们提供了一个模拟示例,以验证我们方法的有效性以及有关实际EEG数据的一些初步结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号