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A Fully Wireless Implantable Multi-Channel Muscle Stimulator with Closed-Loop Feedback Control

机译:具有闭环反馈控制的完全无线可植入的多通道肌刺激器

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We have developed an implantable four-channel high-current biphasic stimulator device for controlling the muscles of the hand, and successfully tested it in a non-human primate (NHP). The charge-balanced stimulator features an external unit which connects to a personal computer via WiFi, and provides wireless power and data control commands to the implant across biological tissue. The stimulator obtained realtime grip force from the hand using a force sensor to perform automated closed-loop control of the stimulation amplitude to ensure that we were able to produce sustained gripping force in the hand of the animal in the event of muscle fatigue. The device was encapsulated using a FDA-compliant biocompatible polymer for reliable long-term study. In-vivo experiments performed after the stimulator (with electrodes embedded in different muscles) had been implanted for one month demonstrated that the system was able to evoke, and automatically maintain, a targeted range of gripping force in the animal's hand. Our results demonstrate the utility of our closed-loop muscle stimulator as a neuroprosthesis for restoring functional hand movements in patients with upper-limb peripheral nerve injuries.
机译:我们开发了一种用于控制手的肌肉的可植入的四通道高电流双相刺激装置,并在非人类灵长类动物(NHP)中成功地测试。电荷平衡刺激器具有通过WiFi连接到个人计算机的外部单元,并为跨生物组织的植入物提供无线电力和数据控制命令。刺激器使用力传感器从手中获得了实时抓握力,以执行刺激幅度的自动闭环控制,以确保在肌肉疲劳的情况下能够在动物手中产生持续的抓握力。该装置使用FDA标准的生物相容性聚合物包封,可用于可靠的长期研究。在刺激器(嵌入在不同肌肉中的电极)进行一个月后进行的体内实验表明该系统能够唤起,并自动维持,动物的手中的目标夹持力范围。我们的结果表明,我们的闭环肌刺激剂作为神经假细胞的效用,用于恢复上肢周围神经损伤患者的功能手动运动。

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