Configuration of electrical spinal cord stimulation through real-time processing of gait kinematics

脊髓 脊髓损伤 运动学 步态 神经假体 刺激 物理医学与康复 医学 神经科学 计算机科学 功能性电刺激 心理学 物理 经典力学
作者
Marco Capogrosso,Fabien B. Wagner,Jérôme Gandar,Eduardo Martin Moraud,Nikolaus Wenger,Tomislav Milekovic,Polina Shkorbatova,Natalia Pavlova,Pavel Musienko,Erwan Bézard,Jocelyne Bloch,Grégoire Courtine
出处
期刊:Nature Protocols [Springer Nature]
卷期号:13 (9): 2031-2061 被引量:123
标识
DOI:10.1038/s41596-018-0030-9
摘要

Epidural electrical stimulation (EES) of the spinal cord and real-time processing of gait kinematics are powerful methods for the study of locomotion and the improvement of motor control after injury or in neurological disorders. Here, we describe equipment and surgical procedures that can be used to acquire chronic electromyographic (EMG) recordings from leg muscles and to implant targeted spinal cord stimulation systems that remain stable up to several months after implantation in rats and nonhuman primates. We also detail how to exploit these implants to configure electrical spinal cord stimulation policies that allow control over the degree of extension and flexion of each leg during locomotion. This protocol uses real-time processing of gait kinematics and locomotor performance, and can be configured within a few days. Once configured, stimulation bursts are delivered over specific spinal cord locations with precise timing that reproduces the natural spatiotemporal activation of motoneurons during locomotion. These protocols can also be easily adapted for the safe implantation of systems in the vicinity of the spinal cord and to conduct experiments involving real-time movement feedback and closed-loop controllers.
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