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犬短期发作间期脑电图记录中的伪迹

Artifacts During Short-Term Interictal Electroencephalographic Recording in Dogs.

作者信息

Cauduro Alberto, Dondi Maurizio, Favole Paolo, Opreni Mauro, Simonetto Lucia Antonietta, Lorenzo Valentina

机构信息

From Associazione Professionale Neurovet, Legnano, Italy (A.C., P.F., M.O., L.A.S.); the Department of Veterinary Science, University of Parma, Parma, Italy (M.D.); and Neurologia Veterinaria, Madrid, Spain (V.L.).

出版信息

J Am Anim Hosp Assoc. 2017 Mar/Apr;53(2):80-89. doi: 10.5326/JAAHA-MS-6486.

Abstract

The electroencephalogram (EEG) is an electrodiagnostic technique widely used in both scientific research and clinical medicine. It makes it possible to study the neurophysiology of brain activity by recording real-time changes in electrical potential produced by cortical activation. The importance of EEG in diagnosing canine epilepsy demonstrates its usefulness when the owner's description of crises is not clear or when the episodes cannot be differentiated from behavioral or cardiac disorders. However, EEG recordings also often record electrical activity from sources other than the brain, which may interfere with the clinical event-related signal. This activity is known as artifactual electrical activity, and the signal changes recorded in these cases corrupt the trace when they are superimposed on brain activity or even, in some cases, mimic pathologic abnormalities. The first step in analyzing and interpreting EEG traces is to recognize artifacts and other specific transient events. This retrospective study set out to ascertain whether artifacts comparable to those described in humans are observed in protocols used to perform short-term interictal EEG for canine epilepsy and how these can be classified.

摘要

脑电图(EEG)是一种广泛应用于科学研究和临床医学的电诊断技术。通过记录皮层激活产生的电位实时变化,它能够研究大脑活动的神经生理学。当主人对发作情况的描述不清晰,或者发作无法与行为或心脏疾病相区分时,脑电图在诊断犬癫痫方面的重要性就体现出来了。然而,脑电图记录也常常记录到来自大脑以外来源的电活动,这可能会干扰与临床事件相关的信号。这种活动被称为伪迹电活动,在这些情况下记录到的信号变化叠加在大脑活动上时会破坏痕迹,甚至在某些情况下会模拟病理异常。分析和解释脑电图痕迹的第一步是识别伪迹和其他特定的瞬态事件。这项回顾性研究旨在确定在用于犬癫痫短期发作间期脑电图检查的方案中是否观察到与人类描述的类似伪迹,以及如何对这些伪迹进行分类。

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