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Evolution of Neuroprosthetic Approaches to Restoration of Upper Extremity Function in Spinal Cord Injury

机译:神经修复方法在脊髓损伤中恢复上肢功能的演变

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摘要

>Background: Spinal cord injury (SCI) occurring at the cervical levels can result in significantly impaired arm and hand function. People with cervical-level SCI desire improved use of their arms and hands, anticipating that regained function will result in improved independence and ultimately improved quality of life. Neuroprostheses provide the most promising method for significant gain in hand and arm function for persons with cervical-level SCI. Neuroprostheses utilize small electrical currents to activate peripheral motor nerves, resulting in controlled contraction of paralyzed muscles. >Methods: A myoelectrically-controlled neuroprosthesis was evaluated in 15 arms in 13 individuals with cervical-level SCI. All individuals had motor level C5 or C6 tetraplegia. >Results: This study demonstrates that an implanted neuroprosthesis utilizing myoelectric signal (MES)–controlled stimulation allows considerable flexibility in the control algorithms that can be utilized for a variety of arm and hand functions. Improved active range of motion, grip strength, and the ability to pick up and release objects were improved in all arms tested. Adverse events were few and were consistent with the experience with similar active implantable devices. >Conclusion: For individuals with cervical SCI who are highly motivated, implanted neuroprostheses provide the opportunity to gain arm and hand function that cannot be gained through the use of orthotics or surgical intervention alone. Upper extremity neuroprostheses have been shown to provide increased function and independence for persons with cervical-level SCI.
机译:>背景:在颈椎水平发生脊髓损伤(SCI)可能会导致手臂和手部功能严重受损。患有颈椎病性脊髓损伤的人希望改善手臂和手的使用,因为他们预计恢复功能将改善独立性并最终改善生活质量。神经假体为颈椎SCI患者的手和臂功能的显着提高提供了最有前途的方法。神经假体利用小的电流来激活周围的运动神经,从而导致瘫痪肌肉的受控收缩。 >方法:对13例颈椎SCI患者的15个手臂进行了肌电控制的神经假体评估。所有个体的运动水平为C5或C6四肢瘫痪。 >结果:该研究表明,利用肌电信号(MES)控制的刺激的植入式神经假体在控制算法中具有相当大的灵活性,可用于多种手臂和手部功能。在所有测试的手臂中,改善了活动范围,抓地力以及拾取和释放物体的能力。不良事件很少,并且与使用类似有源植入设备的经历一致。 >结论:对于动力十足的宫颈SCI患者,植入的神经假体提供了获得手臂和手部功能的机会,而单纯使用矫形器或手术干预无法获得这些功能。上肢神经假体已被证明可以为颈椎SCI患者提供增强的功能和独立性。

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