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癫痫发作的周期。

Cycles in epilepsy.

机构信息

Graeme Clark Institute, The University of Melbourne, Melbourne, Victoria, Australia.

Department of Neurology, University of California, San Francisco, CA, USA.

出版信息

Nat Rev Neurol. 2021 May;17(5):267-284. doi: 10.1038/s41582-021-00464-1. Epub 2021 Mar 15.

Abstract

Epilepsy is among the most dynamic disorders in neurology. A canonical view holds that seizures, the characteristic sign of epilepsy, occur at random, but, for centuries, humans have looked for patterns of temporal organization in seizure occurrence. Observations that seizures are cyclical date back to antiquity, but recent technological advances have, for the first time, enabled cycles of seizure occurrence to be quantitatively characterized with direct brain recordings. Chronic recordings of brain activity in humans and in animals have yielded converging evidence for the existence of cycles of epileptic brain activity that operate over diverse timescales: daily (circadian), multi-day (multidien) and yearly (circannual). Here, we review this evidence, synthesizing data from historical observational studies, modern implanted devices, electronic seizure diaries and laboratory-based animal neurophysiology. We discuss advances in our understanding of the mechanistic underpinnings of these cycles and highlight the knowledge gaps that remain. The potential clinical applications of a knowledge of cycles in epilepsy, including seizure forecasting and chronotherapy, are discussed in the context of the emerging concept of seizure risk. In essence, this Review addresses the broad question of why seizures occur when they occur.

摘要

癫痫是神经病学中最具动态性的疾病之一。一个典型的观点认为,癫痫发作是癫痫的特征性表现,是随机发生的,但几个世纪以来,人类一直在寻找癫痫发作发生的时间组织模式。早在古代,人们就观察到癫痫发作具有周期性,但最近的技术进步首次使人们能够通过直接的大脑记录来定量描述癫痫发作的周期性。对人和动物大脑活动的慢性记录为存在跨越多种时间尺度的癫痫脑活动周期提供了趋同证据:每天(昼夜节律)、多天(多日节律)和每年(年节律)。在这里,我们回顾了这方面的证据,综合了来自历史观察性研究、现代植入设备、电子癫痫日记和实验室动物神经生理学的数据。我们讨论了对这些周期的机制基础的理解的进展,并强调了仍然存在的知识差距。我们还讨论了癫痫周期知识的潜在临床应用,包括癫痫发作预测和时间治疗,这是在新兴的癫痫发作风险概念的背景下进行的。从本质上讲,这篇综述探讨了一个广泛的问题,即为什么癫痫发作会在它们发生的时候发生。

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