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首页> 外文期刊>Artificial Organs >Augmentation of Voluntary Locomotor Activity by Transcutaneous Spinal Cord Stimulation in Motor-Incomplete Spinal Cord-Injured Individuals
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Augmentation of Voluntary Locomotor Activity by Transcutaneous Spinal Cord Stimulation in Motor-Incomplete Spinal Cord-Injured Individuals

机译:运动不完全性脊髓损伤个体经皮脊髓刺激增强自发运动能力

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摘要

The level of sustainable excitability within lumbar spinal cord circuitries is one of the factors determining the functional outcome of locomotor therapy after motor-incomplete spinal cord injury. Here, we present initial data using noninvasive transcutaneous lumbar spinal cord stimulation (tSCS) to modulate this central state of excitability during voluntary treadmill stepping in three motor-incomplete spinal cord-injured individuals. Stimulation was applied at 30Hz with an intensity that generated tingling sensations in the lower limb dermatomes, yet without producing muscle reflex activity. This stimulation changed muscle activation, gait kinematics, and the amount of manual assistance required from the therapists to maintain stepping with some interindividual differences. The effect on motor outputs during treadmill-stepping was essentially augmentative and step-phase dependent despite the invariant tonic stimulation. The most consistent modification was found in the gait kinematics, with the hip flexion during swing increased by 11.3 degrees +/- 5.6 degrees across all subjects. This preliminary work suggests that tSCS provides for a background increase in activation of the lumbar spinal locomotor circuitry that has partially lost its descending drive. Voluntary inputs and step-related feedback build upon the stimulation-induced increased state of excitability in the generation of locomotor activity. Thus, tSCS essentially works as an electrical neuroprosthesis augmenting remaining motor control.
机译:腰脊髓回路内可持续兴奋性水平是决定运动性脊髓不完全损伤后运动疗法功能结果的因素之一。在这里,我们介绍了使用非侵入性经皮腰椎脊髓刺激(tSCS)来调制在三个跑步者不完整的脊髓损伤个体中在自愿跑步机踩踏过程中这种兴奋性中心状态的初始数据。以30Hz的频率刺激,强度会在下肢皮肤切开处产生刺痛感,但不会产生肌肉反射活动。这种刺激改变了肌肉的激活,步态运动学以及治疗师维持步伐(个体之间存在差异)所需的手动协助量。尽管进阶刺激是不变的,但在跑步机步进过程中对电机输出的影响本质上是增强的,并且与步进阶段有关。在步态运动学中发现了最一致的改变,在所有受试者中,挥杆过程中的髋部屈曲度增加了11.3度+/- 5.6度。这项初步工作表明,tSCS为腰椎脊髓运动电路的激活提供了背景增强,而腰椎运动电路已部分失去其下降的驱动力。自愿输入和与步有关的反馈建立在运动活动产生中刺激引起的兴奋性增加状态上。因此,tSCS本质上是作为一种神经神经假体,可增强剩余的运动控制能力。

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