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Reengineering deep brain stimulation for movement disorders: Emerging technologies

机译:重塑运动障碍的深层大脑刺激:新兴技术

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摘要

Deep brain stimulation (DBS) is a neurosurgical technique, which consists of continuous delivery of an electrical pulse through chronically implanted electrodes connected to a neurostimulator, programmable in amplitude, pulse width, frequency, and stimulation channel. DBS is a promising treatment option for addressing severe and drug-resistant movement disorders. The success of DBS therapy is a combination of surgical implantation techniques, device technology, and clinical programming strategies. Changes in device settings require highly trained and experienced clinicians to achieve maximal therapeutic benefit for each targeted symptom, and optimization of stimulation parameters can take many visits. Thus, the development of innovative DBS technologies that can optimize the clinical implementation of DBS will lead to wider scale utilization. This review aims to present engineering approaches that have the potential to improve clinical outcomes of DBS, focusing on the development novel temporal patterns, innovative electrode designs, computational models to guide stimulation, closed-loop DBS, and remote programming.
机译:深部脑刺激(DBS)是一种神经外科技术,包括通过与神经刺激器相连的慢性植入电极连续传递电脉冲,该电极可在幅度,脉冲宽度,频率和刺激通道上进行编程。 DBS是解决严重且抗药性运动障碍的有前途的治疗选择。 DBS治疗的成功在于外科植入技术,设备技术和临床编程策略的结合。设备设置的变化需要训练有素且经验丰富的临床医生才能针对每种目标症状实现最大的治疗效果,并且刺激参数的优化可能需要很多次访问。因此,可以优化DBS临床实施的创新DBS技术的发展将导致更广泛的利用。这篇综述旨在介绍具有潜力改善DBS临床结果的工程方法,重点是开发新颖的时间模式,创新的电极设计,指导刺激的计算模型,闭环DBS和远程编程。

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