微刺激
医学
脊髓
脊髓损伤
腰椎
生物医学工程
硬脑膜
植入
运动功能
解剖
刺激
外科
物理医学与康复
精神科
内科学
作者
Omar Tawakol,Martin D. Herman,Sean Foxley,Vivian K. Mushahwar,Vernon L. Towle,Philip R. Troyk
摘要
Abstract Background Spinal cord injury causes a drastic loss in motor and sensory function. Intraspinal microstimulation (ISMS) is an electrical stimulation method developed for restoring motor function by activating the spinal networks below the level of injury. Current ISMS technology uses fine penetrating microwires to stimulate the ventral horn of the lumbar enlargement. The penetrating wires traverse the dura mater through a transdural conduit that connects to an implantable pulse generator. Objective A wireless, fully intradural ISMS implant was developed to mitigate the potential complications associated with the transdural conduit, including tethering and leakage of cerebrospinal fluid. Methods Two wireless floating microelectrode array (WFMA) devices were implanted in the lumbar enlargement of an adult domestic pig. Voltage transients were used to assess the electrochemical stability of the interface. Manual flexion and extension movements of the spine were performed to evaluate the mechanical stability of the interface. Post‐mortem 9T MRI imaging was used to confirm the location of the electrodes. Results The WFMA‐based ISMS interface successfully evoked extension and flexion movements of the hip joint. Stimulation thresholds remained stable following manual extension and flexion of the spine. Conclusion The preliminary results demonstrate the surgical feasibility as well as the functionality of the proposed wireless ISMS system.
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