Burke John F, Kunwar Nikhita, Yaroshinsky Maria S, Louie Kenneth H, Shirvalkar Prasad, Su Paul, Henry Melanie, Pasvankas George, Poree Lawrence, Jacques Lines, Wang Doris D
Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA, United States.
Department of Anesthesia and Pain Management, University of California, San Francisco, San Francisco, CA, United States.
Front Hum Neurosci. 2021 Oct 26;15:721076. doi: 10.3389/fnhum.2021.721076. eCollection 2021.
Little is known about the electrophysiological activity of the spinal cord during voluntary movement control in humans. We present a novel method for recording electrophysiological activity from the human spinal cord using implanted epidural electrodes during naturalistic movements including overground walking. Spinal electrograms (SEGs) were recorded from epidural electrodes implanted as part of a test trial for patients with chronic pain undergoing evaluation for spinal cord stimulation. Externalized ends of the epidural leads were connected to an external amplifier to capture SEGs. Electromyographic and accelerometry data from the upper and lower extremities were collected using wireless sensors and synchronized to the SEG data. Patients were instructed to perform various arm and leg movements while SEG and kinematic data were collected. This study proves the safety and feasibility of performing epidural spinal recordings from human subjects performing movement tasks.
关于人类在自主运动控制过程中脊髓的电生理活动,我们了解得很少。我们提出了一种新颖的方法,即在包括地面行走在内的自然运动过程中,使用植入的硬膜外电极记录人类脊髓的电生理活动。脊髓电图(SEGs)是从作为慢性疼痛患者脊髓刺激评估测试试验一部分而植入的硬膜外电极记录的。硬膜外导联的外置端连接到外部放大器以捕获SEGs。使用无线传感器收集上肢和下肢的肌电图和加速度计数据,并与SEG数据同步。在收集SEG和运动学数据时,指示患者进行各种手臂和腿部运动。本研究证明了对执行运动任务的人类受试者进行硬膜外脊髓记录的安全性和可行性。