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新型头皮下和颅内装置可在未麻醉、行为正常的犬类处于自然环境时无线记录和分析连续脑电图:犬癫痫研究的新范式。

Novel subscalp and intracranial devices to wirelessly record and analyze continuous EEG in unsedated, behaving dogs in their natural environments: A new paradigm in canine epilepsy research.

作者信息

Löscher Wolfgang, Worrell Gregory A

机构信息

Department of Pharmacology, Toxicology, and Pharmacy, University of Veterinary Medicine, Hanover, Germany.

Center for Systems Neuroscience, Hanover, Germany.

出版信息

Front Vet Sci. 2022 Oct 20;9:1014269. doi: 10.3389/fvets.2022.1014269. eCollection 2022.

Abstract

Epilepsy is characterized by unprovoked, recurrent seizures and is a common neurologic disorder in dogs and humans. Roughly 1/3 of canines and humans with epilepsy prove to be drug-resistant and continue to have sporadic seizures despite taking daily anti-seizure medications. The optimization of pharmacologic therapy is often limited by inaccurate seizure diaries and medication side effects. Electroencephalography (EEG) has long been a cornerstone of diagnosis and classification in human epilepsy, but because of several technical challenges has played a smaller clinical role in canine epilepsy. The interictal (between seizures) and ictal (seizure) EEG recorded from the epileptic mammalian brain shows characteristic electrophysiologic biomarkers that are very useful for clinical management. A fundamental engineering gap for both humans and canines with epilepsy has been the challenge of obtaining continuous long-term EEG in the patients' natural environment. We are now on the cusp of a revolution where continuous long-term EEG from behaving canines and humans will be available to guide clinicians in the diagnosis and optimal treatment of their patients. Here we review some of the devices that have recently emerged for obtaining long-term EEG in ambulatory subjects living in their natural environments.

摘要

癫痫的特征是无端反复发作,是犬类和人类常见的神经系统疾病。大约三分之一的癫痫犬类和人类被证明对药物耐药,尽管每天服用抗癫痫药物仍会不时发作。药物治疗的优化常常受到不准确的癫痫发作日记和药物副作用的限制。脑电图(EEG)长期以来一直是人类癫痫诊断和分类的基石,但由于一些技术挑战,在犬类癫痫中发挥的临床作用较小。从癫痫哺乳动物大脑记录的发作间期(发作之间)和发作期(发作时)脑电图显示出特征性的电生理生物标志物,对临床管理非常有用。对于患有癫痫的人类和犬类来说,一个基本的工程差距在于在患者自然环境中获得连续长期脑电图的挑战。我们正处于一场革命的边缘,来自行为正常的犬类和人类的连续长期脑电图将可用于指导临床医生对患者进行诊断和优化治疗。在此,我们回顾一些最近出现的用于在自然环境中生活的动态受试者身上获取长期脑电图的设备。

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