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Enhancing Rehabilitative Therapies with Vagus Nerve Stimulation

机译:迷走神经刺激增强康复治疗

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摘要

Pathological neural activity could be treated by directing specific plasticity to renormalize circuits and restore function. Rehabilitative therapies aim to promote adaptive circuit changes after neurological disease or injury, but insufficient or maladaptive plasticity often prevents a full recovery. The development of adjunctive strategies that broadly support plasticity to facilitate the benefits of rehabilitative interventions has the potential to improve treatment of a wide range of neurological disorders. Recently, stimulation of the vagus nerve in conjunction with rehabilitation has emerged as one such potential targeted plasticity therapy. Vagus nerve stimulation (VNS) drives activation of neuromodulatory nuclei that are associated with plasticity, including the cholinergic basal forebrain and the noradrenergic locus coeruleus. Repeatedly pairing brief bursts of VNS sensory or motor events drives robust, event-specific plasticity in neural circuits. Animal models of chronic tinnitus, ischemic stroke, intracerebral hemorrhage, traumatic brain injury, and post-traumatic stress disorder benefit from delivery of VNS paired with successful trials during rehabilitative training. Moreover, mounting evidence from pilot clinical trials provides an initial indication that VNS-based targeted plasticity therapies may be effective in patients with neurological diseases and injuries. Here, I provide a discussion of the current uses and potential future applications of VNS-based targeted plasticity therapies in animal models and patients, and outline challenges for clinical implementation.Electronic supplementary materialThe online version of this article (doi:10.1007/s13311-015-0417-z) contains supplementary material, which is available to authorized users.
机译:可以通过指导特定的可塑性来使回路重新正常化并恢复功能来治疗病理性神经活动。康复疗法旨在促进神经系统疾病或受伤后的适应性电路改变,但可塑性或适应不良不足通常会阻止其完全康复。广泛支持可塑性以促进康复干预措施获益的辅助策略的开发,有可能改善对多种神经系统疾病的治疗。近来,刺激迷走神经与康复相结合已经成为这种潜在的靶向可塑性疗法之一。迷走神经刺激(VNS)驱动与可塑性相关的神经调节核的激活,包括胆碱能基底前脑和去甲肾上腺素能蓝斑。 VNS感觉或运动事件的短暂突发反复配对,可驱动神经回路中特定事件的强大可塑性。慢性耳鸣,缺血性中风,脑出血,颅脑外伤和创伤后应激障碍的动物模型受益于VNS的交付以及在康复训练中的成功试验。此外,从中试临床试验获得的越来越多的证据初步表明,基于VNS的靶向可塑性疗法可能对患有神经系统疾病和损伤的患者有效。在这里,我将讨论基于VNS的靶向可塑性疗法在动物模型和患者中的当前用途和潜在的未来应用,并概述临床实施方面的挑战。电子补充材料本文的在线版本(doi:10.1007 / s13311-015) -0417-z)包含补充材料,授权用户可以使用。

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