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使用小波II型模糊分类器识别早产胎羊缺氧缺血性脑电图中的刻板演变微尺度癫痫发作(SEMS)。

Identifying stereotypic evolving micro-scale seizures (SEMS) in the hypoxic-ischemic EEG of the pre-term fetal sheep with a wavelet type-II fuzzy classifier.

作者信息

Abbasi Hamid, Bennet Laura, Gunn Alistair J, Unsworth Charles P

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:973-976. doi: 10.1109/EMBC.2016.7590864.

DOI:10.1109/EMBC.2016.7590864
PMID:28268486
Abstract

Perinatal hypoxic-ischemic encephalopathy (HIE) around the time of birth due to lack of oxygen can lead to debilitating neurological conditions such as epilepsy and cerebral palsy. Experimental data have shown that brain injury evolves over time, but during the first 6-8 hours after HIE the brain has recovered oxidative metabolism in a latent phase, and brain injury is reversible. Treatments such as therapeutic cerebral hypothermia (brain cooling) are effective when started during the latent phase, and continued for several days. Effectiveness of hypothermia is lost if started after the latent phase. Post occlusion monitoring of particular micro-scale transients in the hypoxic-ischemic (HI) Electroencephalogram (EEG), from an asphyxiated fetal sheep model in utero, could provide precursory evidence to identify potential biomarkers of injury when brain damage is still treatable. In our studies, we have reported how it is possible to automatically detect HI EEG transients in the form of spikes and sharp waves during the latent phase of the HI EEG of the preterm fetal sheep. This paper describes how to identify stereotypic evolving micro-scale seizures (SEMS) which have a relatively abrupt onset and termination in a frequency range of 1.8-3Hz (Delta waves) superimposed on a suppressed EEG amplitude background post occlusion. This research demonstrates how a Wavelet Type-II Fuzzy Logic System (WT-Type-II-FLS) can be used to automatically identify subtle abnormal SEMS that occur during the latent phase with a preliminary average validation overall performance of 78.71%±6.63 over the 390 minutes of the latent phase, post insult, using in utero pre-term hypoxic fetal sheep models.

摘要

围产期缺氧缺血性脑病(HIE)是由于出生时缺氧导致的,可引发癫痫和脑瘫等使人衰弱的神经疾病。实验数据表明,脑损伤会随时间演变,但在HIE后的最初6 - 8小时内,大脑在潜伏期恢复了氧化代谢,且脑损伤是可逆的。诸如治疗性脑低温(脑部降温)等治疗方法在潜伏期开始并持续数天是有效的。如果在潜伏期之后开始,低温治疗的效果就会丧失。对子宫内窒息胎羊模型的缺氧缺血(HI)脑电图(EEG)中特定微尺度瞬变进行闭塞后监测,可为在脑损伤仍可治疗时识别潜在损伤生物标志物提供先兆证据。在我们的研究中,我们报告了如何在早产胎羊的HI EEG潜伏期自动检测呈尖峰和锐波形式的HI EEG瞬变。本文描述了如何识别刻板演变微尺度癫痫发作(SEMS),其在闭塞后叠加在受抑制的EEG振幅背景上,在1.8 - 3Hz频率范围内(δ波)具有相对突然的起始和终止。这项研究展示了如何使用小波II型模糊逻辑系统(WT - Type - II - FLS)自动识别潜伏期出现的细微异常SEMS,在使用子宫内早产缺氧胎羊模型进行损伤后,在潜伏期的390分钟内初步平均验证总体性能为78.71%±6.63。

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引用本文的文献

1
Latent Phase Identification of High-Frequency Micro-Scale Gamma Spike Transients in the Hypoxic Ischemic EEG of Preterm Fetal Sheep Using Spectral Analysis and Fuzzy Classifiers.利用频谱分析和模糊分类器对早产胎羊缺氧缺血脑电图中的高频微尺度γ尖峰瞬态进行潜伏期识别。
Sensors (Basel). 2020 Mar 5;20(5):1424. doi: 10.3390/s20051424.
2
Electroencephalogram studies of hypoxic ischemia in fetal and neonatal animal models.胎儿和新生儿动物模型中缺氧缺血的脑电图研究。
Neural Regen Res. 2020 May;15(5):828-837. doi: 10.4103/1673-5374.268892.
3
Applications of advanced signal processing and machine learning in the neonatal hypoxic-ischemic electroencephalogram.
先进信号处理与机器学习在新生儿缺氧缺血性脑电图中的应用
Neural Regen Res. 2020 Feb;15(2):222-231. doi: 10.4103/1673-5374.265542.
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EEG sharp waves are a biomarker of striatal neuronal survival after hypoxia-ischemia in preterm fetal sheep.EEG 尖波是早产儿羊缺氧缺血后纹状体神经元存活的生物标志物。
Sci Rep. 2018 Nov 5;8(1):16312. doi: 10.1038/s41598-018-34654-7.