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开发具有闭环控制的物联网电刺激器。

Development of an IoT Electrostimulator with Closed-Loop Control.

机构信息

Graduate Program in Neuroengineering, Edmond and Lily Safra International Institute of Neuroscience, Santos Dumont Institute, Av. Alberto Santos Dumont, 1560, Zona Rural, Macaiba 59280-000, RN, Brazil.

出版信息

Sensors (Basel). 2022 May 7;22(9):3551. doi: 10.3390/s22093551.

Abstract

The most used approach in the motor rehabilitation of spinal cord injury is functional electrical stimulation. However, current devices do not provide real-time feedback, work in the closed-loop, and became remotely operable. In this scenario, this paper presents the development of an open access 4-channel IoT electrostimulator device with an inertial sensor. The electrostimulator circuit was designed with four modules: Boost Converter, H-bridge, Inertial Measurement Unit, and Processing Module. The firmware was implemented in the processing module to manage the modules to perform closed-loop stimulation (using PID controller). To perform the proof of concept of the device, a closed loop test was performed to control the ankle joint, performing the movements of dorsiflexion, plantar flexion, inversion, and eversion. The designed hardware allowed one to freely change the boost converter voltage and modulate the signal with 200 μs of pulse duration and 50 Hz of period in a safe and stable way. Furthermore, the controller was able to move the ankle joint in all desired directions following the reference values and respecting the imposed constraints. In general, the developed hardware was able to safely control a closed-loop joint.

摘要

脊髓损伤康复中最常用的方法是功能性电刺激。然而,目前的设备不能提供实时反馈、闭环工作和远程操作。在这种情况下,本文提出了一种具有惯性传感器的开放访问 4 通道物联网电刺激器设备的开发。电刺激器电路由四个模块设计:升压转换器、H 桥、惯性测量单元和处理模块。在处理模块中实现了固件,以管理模块执行闭环刺激(使用 PID 控制器)。为了对设备进行概念验证,进行了闭环测试以控制踝关节,执行背屈、跖屈、内翻和外翻运动。所设计的硬件允许以安全稳定的方式自由改变升压转换器电压,并以 200 μs 的脉冲持续时间和 50 Hz 的周期调制信号。此外,控制器能够根据参考值和施加的约束在所有期望的方向上移动踝关节。总的来说,所开发的硬件能够安全地控制闭环关节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be4e/9104803/ddb01b4cfbf3/sensors-22-03551-g001.jpg

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