Bhadra N, Kilgore K L, Peckham P H
Case Western Reserve University, Cleveland, OH, USA.
Med Eng Phys. 2001 Jan;23(1):19-28. doi: 10.1016/s1350-4533(01)00012-1.
Neuroprostheses that electrically stimulate paralyzed muscles provide functional enhancements for individuals with spinal cord injury and stroke such as standing and stepping, reaching and grasping, and bladder and bowel function. For chronic applications, implanted neuroprostheses lead to reliable, low-maintenance and patient-acceptable systems. The advantages of such systems are discussed followed by a generic description of implantable stimulators. Features of current first and second generation neuroprostheses developed at our centre are discussed followed by our experience in the application of these devices in the rehabilitation of individuals with spinal cord injury.
对瘫痪肌肉进行电刺激的神经假体可为脊髓损伤和中风患者提供功能增强,如站立和行走、伸手和抓握以及膀胱和肠道功能。对于长期应用,植入式神经假体可带来可靠、低维护且患者可接受的系统。本文将讨论此类系统的优势,随后对可植入刺激器进行一般性描述。接着将讨论我们中心研发的当前第一代和第二代神经假体的特点,以及我们在将这些设备应用于脊髓损伤患者康复方面的经验。