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A neuromechanical modeling of spinal cord injury locomotor system for simulating the rehabilitation effects

机译:脊髓损伤运动系统的神经力学模型,用于模拟康复效果

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Gait recovering after spinal cord injury (SCI) is a regular attempt in neurorehabilitation. For this purpose, various clinical techniques have been proposed until now. However, the feasibility of these techniques has not been theoretically investigated so much. This has been mainly for difficulties of gait modeling in SCI patients. Involving these problems, recently neuromechanical models of gait locomotion have been proposed for examining rehabilitation methods. However, these models were so simple that could not properly express rehabilitation effects. Notably, lesion intensity is a concern that was never attended in prior simulations. Due to this limitation, in this paper a new neuromechanical model is proposed that classifies patients based on intensity of trauma. Explicitly, the complete, severe and non-severe incomplete SCIs are imitated and effects of related clinical rehabilitations are explored. Remarkably, the model indicates an incredible performance in explaining the rehabilitation effects through presenting the compliant results with clinical information. The suitability of this model is mainly for the applied neuromuscular plan that consists of a combined plan of central pattern generator (CPG) and neural reflexes that controls a double segment limb. The validity of this model is further proved by comparing the kinematic and kinetic results to the experimental data. (C) 2015 Nalecz Institute of Biocybernetics and Biomedical Engineering. Published by Elsevier Sp. z o.o. All rights reserved.
机译:脊髓损伤(SCI)后步态恢复是神经康复的常规尝试。为此目的,迄今为止已经提出了各种临床技术。但是,这些技术的可行性尚未在理论上进行过太多研究。这主要是由于难以在SCI患者中进行步态建模。涉及这些问题,最近提出了步态运动的神经力学模型来研究康复方法。但是,这些模型非常简单,无法正确表达康复效果。值得注意的是,病变强度是先前模拟中从未涉及的问题。由于这一局限性,本文提出了一种新的神经力学模型,可以根据创伤强度对患者进行分类。明确地,模仿完全,严重和非严重的不完全SCI,并探索相关临床康复的效果。值得注意的是,该模型通过向临床医生提供符合性的结果,在解释康复效果方面显示出令人难以置信的性能。该模型的适用性主要适用于所应用的神经肌肉计划,该计划包括中央模式发生器(CPG)和控制双节肢的神经反射的组合计划。通过将运动学和动力学结果与实验数据进行比较,进一步证明了该模型的有效性。 (C)2015 Nalecz生物网络与生物医学工程学院。由Elsevier Sp。发行。动物园。版权所有。

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