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Commentary: Physical approaches for the treatment of epilepsy: Electrical and magnetic stimulation and cooling

机译:评论:物理疗法治疗癫痫:电磁刺激和冷却

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Physical approaches for the treatment of epilepsy currently under study or development include electrical or magnetic brain stimulators and cooling devices, each of which may be implanted or applied externally. Some devices may stimulate peripheral structures, whereas others may be implanted directly into the brain. Stimulation may be delivered chronically, intermittently, or in response to either manual activation or computer-based detection of events of interest. Physical approaches may therefore ultimately be appropriate for seizure prophylaxis by causing a modification of the underlying substrate, presumably with a reduction in the intrinsic excitability of cerebral structures, or for seizure termination, by interfering with the spontaneous discharge of pathological neuronal networks. Clinical trials of device-based therapies are difficult due to ethical issues surrounding device implantation, problems with blinding, potential carryover effects that may occur in crossover designs if substrate modification occurs, and subject heterogeneity. Unresolved issues in the development of physical treatments include optimization of stimulation parameters, identification of the optimal volume of brain to be stimulated, development of adequate power supplies to stimulate the necessary areas, and a determination that stimulation itself does not promote epileptogenesis or adverse long-term effects on normal brain function.
机译:当前正在研究或开发中的用于治疗癫痫的物理方法包括电或磁脑刺激器和冷却装置,它们中的每一个都可以植入或外部应用。一些设备可能会刺激周围结构,而其他设备可能会直接植入大脑。刺激可以长期,间歇地或响应于手动激活或对感兴趣事件的基于计算机的检测而进行。因此,物理方法最终可能通过引起基础底物的修饰(可能降低脑结构的固有兴奋性)或通过干扰病理神经元网络的自发放电来终止癫痫发作,而最终适合于预防癫痫发作。基于器械的疗法的临床试验非常困难,原因是围绕器械植入的伦理问题,致盲问题,如果发生底物修饰,交叉设计中可能发生的潜在携带效应,以及受试者的异质性。物理治疗方法开发中尚未解决的问题包括优化刺激参数,确定要刺激的最佳大脑体积,开发足够的电源以刺激必要区域以及确定刺激本身不会促进癫痫发生或不利的长期运动。对正常脑功能的长期影响。

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