Ganzer Patrick D, Sharma Gaurav
Medical Devices and Neuromodulation, Battelle Memorial Institute, Columbus, OH, USA.
Neural Regen Res. 2019 Jan;14(1):46-50. doi: 10.4103/1673-5374.243697.
The peripheral nervous system plays a major role in the maintenance of our physiology. Several peripheral nerves intimately regulate the state of the brain, spinal cord, and visceral systems. A new class of therapeutics, called bioelectronic medicines, are being developed to precisely regulate physiology and treat dysfunction using peripheral nerve stimulation. In this review, we first discuss new work using closed-loop bioelectronic medicine to treat upper limb paralysis. In contrast to open-loop bioelectronic medicines, closed-loop approaches trigger 'on demand' peripheral nerve stimulation due to a change in function (e.g., during an upper limb movement or a change in cardiopulmonary state). We also outline our perspective on timing rules for closed-loop bioelectronic stimulation, interface features for non-invasively stimulating peripheral nerves, and machine learning algorithms to recognize disease events for closed-loop stimulation control. Although there will be several challenges for this emerging field, we look forward to future bioelectronic medicines that can autonomously sense changes in the body, to provide closed-loop peripheral nerve stimulation and treat disease.
外周神经系统在维持我们的生理机能方面发挥着重要作用。几条外周神经密切调节大脑、脊髓和内脏系统的状态。一类名为生物电子药物的新型治疗方法正在被研发,旨在通过外周神经刺激精确调节生理机能并治疗功能障碍。在这篇综述中,我们首先讨论使用闭环生物电子药物治疗上肢瘫痪的新研究。与开环生物电子药物不同,闭环方法会因功能变化(例如在上肢运动或心肺状态改变期间)触发“按需”外周神经刺激。我们还概述了我们对闭环生物电子刺激的定时规则、非侵入性刺激外周神经的接口特征以及用于识别疾病事件以进行闭环刺激控制的机器学习算法的看法。尽管这个新兴领域会面临诸多挑战,但我们期待未来的生物电子药物能够自主感知身体变化,提供闭环外周神经刺激并治疗疾病。