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弱直流电(DC)电场作为治疗脊髓损伤的一种方法:振荡场刺激器(OFS)的回顾与进展。

Weak direct current (DC) electric fields as a therapy for spinal cord injuries: review and advancement of the oscillating field stimulator (OFS).

机构信息

Center for Paralysis Research, Department of Basic Medical Sciences, College of Veterinary Medicine, Purdue University, 408 S. University St., West Lafayette, IN, 47907, USA.

出版信息

Neurosurg Rev. 2019 Dec;42(4):825-834. doi: 10.1007/s10143-018-01068-y. Epub 2019 Jan 4.

Abstract

Traumatic injury to the spinal cord remains a catastrophic event that has lifelong consequences. While decades of research have elucidated much of the pathophysiology associated with spinal cord injury (SCI), there still remains no clinically approved treatments for restoring lost sensorimotor function. The traditional dogma suggests central nervous system (CNS) neurons do not regenerate after injury but active areas of research aim to overcome this biological bottleneck. One particular approach using low-level direct current electric fields (DC EFs) appears especially promising based on a rich set of experimental data. This review highlights the biological basis for EF-induced regeneration and discusses the pre-clinical and clinical trials using the oscillating field stimulator (OFS)-a medical device designed to deliver DC EFs in vivo. I further report ongoing developments in our laboratory that refreshes the OFS concept with the hope of renewing interest in conducting additional clinical trials.

摘要

脊髓创伤仍然是一种灾难性的事件,会带来终身的后果。虽然几十年来的研究已经阐明了与脊髓损伤 (SCI) 相关的许多病理生理学,但仍然没有临床批准的治疗方法来恢复失去的感觉运动功能。传统的观点认为中枢神经系统 (CNS) 神经元在损伤后不会再生,但活跃的研究领域旨在克服这一生物学瓶颈。一种特别有前途的方法是使用低水平直流电电场 (DC EFs),这是基于一组丰富的实验数据。本综述强调了 EF 诱导再生的生物学基础,并讨论了使用振荡场刺激器 (OFS) 的临床前和临床试验,这是一种旨在体内提供 DC EFs 的医疗设备。我进一步报告了我们实验室的正在进行的研究进展,用更新的 OFS 概念来激发人们的兴趣,希望能重新开展更多的临床试验。

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