Suppr超能文献

从全面性强直-阵挛发作中单通道表面肌电图的自动处理,以辅助症状学分析。

Automated Processing of Single-Channel Surface Electromyography From Generalized Tonic-Clonic Seizures to Inform Semiology.

机构信息

Brain Sentinel Inc, San Antonio, Texas, U.S.A.

Medical University of South Carolina, Charleston, South Carolina, U.S.A.

出版信息

J Clin Neurophysiol. 2020 Jan;37(1):56-61. doi: 10.1097/WNP.0000000000000618.

Abstract

PURPOSE

Advances in surface electromyography (sEMG) monitoring allow for long-term data collection in a natural environment, giving objective information that may identify risk of sudden unexpected death in epilepsy and guide clinical decision-making. Generalized tonic-clonic seizure semiology, namely motor tonic and clonic phase duration, may be an important factor in determining the level of seizure control and risk of sudden unexpected death in epilepsy. This study demonstrates a quantitative analysis of sEMG collected with a dedicated wearable device.

METHODS

During routine monitoring, 23 generalized tonic-clonic seizures from 19 subjects were simultaneously recorded with video-EEG and sEMG. A continuous wavelet-transform was used to determine the frequency components of sEMG recorded during generalized tonic-clonic seizures. An automated process, incorporating a variant of cross-validation, was created to identify ideal frequencies and magnitude ranges for tonic and clonic phases and determine phase durations. Phase durations determined using sEMG analysis were compared with phase durations determined by independent epileptologists' review of video-EEG.

RESULTS

Cross-validation revealed that the optimal frequency bands for tonic and clonic phases are 150 to 270 Hz and 12 to 70 Hz, respectively. The average difference in phase duration calculated using the two methods for tonic and clonic phases and total seizure duration were -0.42 ± 4.94, -5.12 ± 9.68, and -5.11 ± 11.33 seconds, respectively (results presented are TsEMG - TvEEG, μ ± σ).

CONCLUSIONS

The automated processing of sEMG presented here accurately identified durations of tonic, clonic, and total motor durations of generalized tonic-clonic seizures similar to durations identified by epileptologists' review of video-EEG.

摘要

目的

表面肌电图(sEMG)监测技术的进步使得能够在自然环境中进行长期数据采集,提供可能识别癫痫猝死风险并指导临床决策的客观信息。全身性强直-阵挛发作的症状学,即运动性强直和阵挛期的持续时间,可能是确定癫痫发作控制水平和癫痫猝死风险的重要因素。本研究展示了一种使用专用可穿戴设备采集 sEMG 的定量分析。

方法

在常规监测期间,19 名受试者中的 23 例全身性强直-阵挛发作同时进行视频-脑电图和 sEMG 记录。使用连续小波变换确定在全身性强直-阵挛发作期间记录的 sEMG 的频率分量。创建了一个自动化处理过程,结合了交叉验证的变体,用于识别强直和阵挛相的理想频率和幅度范围,并确定相持续时间。使用 sEMG 分析确定的相持续时间与视频-脑电图的独立癫痫学家审查确定的相持续时间进行比较。

结果

交叉验证显示,强直相和阵挛相的最佳频带分别为 150 至 270 Hz 和 12 至 70 Hz。两种方法计算的强直和阵挛相以及总发作持续时间的相位持续时间平均差异分别为-0.42 ± 4.94、-5.12 ± 9.68 和-5.11 ± 11.33 秒(结果以 TsEMG - TvEEG 表示,μ ± σ)。

结论

本文提出的 sEMG 自动处理方法准确识别了全身性强直-阵挛发作的强直、阵挛和总运动持续时间,与癫痫学家对视频-脑电图的审查确定的持续时间相似。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验