首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Kinematic analysis of the gait of adult sheep during treadmill locomotion: Parameter values, allowable total error, and potential for use in evaluating spinal cord injury
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Kinematic analysis of the gait of adult sheep during treadmill locomotion: Parameter values, allowable total error, and potential for use in evaluating spinal cord injury

机译:跑步机运动过程中成人绵羊步态的运动学分析:参数值,允许的总误差以及用于评估脊髓损伤的可能性

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We are developing a novel intradural spinal cord (SC) stimulator designed to improve the treatment of intractable pain and the sequelae of SC injury. In-vivo ovine models of neuropathic pain and moderate SC injury are being implemented for pre-clinical evaluations of this device, to be carried out via gait analysis before and after induction of the relevant condition. We extend previous studies on other quadrupeds to extract the three-dimensional kinematics of the limbs over the gait cycle of sheep walking on a treadmill. Quantitative measures of thoracic and pelvic limb movements were obtained from 17 animals. We calculated the total-error values to define the analytical performance of our motion capture system for these kinematic variables. The post- vs. pre-injury time delay between contralateral thoracic and pelvic-limb steps for normal and SC-injured sheep increased by similar to 24 s over 100 steps. The pelvic limb hoof velocity during swing phase decreased, while range of pelvic hoof elevation and distance between lateral pelvic hoof placements increased after SC injury. The kinematics measures in a single SC-injured sheep can be objectively defined as changed from the corresponding pre-injury values, implying utility of this method to assess new neuromodulation strategies for specific deficits exhibited by an individual. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们正在开发一种新型内部脊髓(SC)刺激器,旨在改善顽固的疼痛和SC损伤后遗症的治疗。对于这种装置的前期临床评估,正在实施神经病疼痛和中度SC损伤的体内绵羊模型,在诱导相关病症之前和之后通过步态分析进行。我们以前的研究缩短了其他Quadrups的研究,以在跑步机上行走的绵羊步态周期提取肢体的三维运动学。从17只动物获得胸腔和盆腔肢体运动的定量测量。我们计算了总误差值,以定义我们的运动捕捉系统的分析性能,用于这些运动变量。与正常和SC伤害绵羊对侧胸腔和盆腔 - 肢体步骤之间的后损伤时间延迟增加了24 s超过100步。摆动阶段期间的盆腔旋转速度降低,而SC损伤后侧腹蹄蹄间腹部腹部升高和距离的范围增加。单个SC损伤绵羊中的运动学措施可以客观地定义为从相应的伤害局部值改变,暗示这种方法的效用,以评估个人呈现的特定缺陷的新神经调查策略。 (c)2015 Elsevier B.v.保留所有权利。

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