在临床环境中调整和优化多功能铰接式踝足矫形器的拟议循证指导算法

Nicholas A. LeCursi, Beatrice M. Janka, Fan Gao, M. Orendurff, Yufan He, Toshiki Kobayashi
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引用次数: 0

摘要

患有神经肌肉病变的人通常会被处方使用踝足矫形器(AFO),通过减少踝关节和下肢的病理运动来改善步态力学。踝足矫形器可以抵御或辅助导致绊倒、不稳定和缓慢低效步态的过度或缺失的肌肉力量。然而,要选择合适的具有机械特性的 AFO,在步态周期的某些阶段限制踝关节的病理运动,而在其他阶段促进踝关节的有效运动,需要谨慎的临床决策。本研究的目的是提出一种在临床环境中调整多功能铰接式 AFO 的明确方法。其次是概述支持该方法的证据,并找出文献中的不足之处,作为未来研究的潜在领域。多功能铰接式 AFO 是一类新兴的 AFO,其特点是可以更全面、反复和可逆地调整 AFO 的踝关节排列和踝关节运动阻力。然而,目前还没有在临床中应用和优化这些治疗设备的标准方法。在此,我们提出了一种适用于在临床环境中调整多功能铰接式 AFO 的循证指导方法。我们给出了载荷-挠度特性曲线,以说明多功能铰接式 AFO 理想化但复杂的阻力-角度行为。引用研究结果来证明这些机械特性如何有助于减轻特定病理踝关节和膝关节运动学和动力学。有证据支持系统调整高阻力、可对齐、铰接式 AFO 的效果,以解决在神经肌肉疾病患者身上观察到的许多典型病理机械模式。文中介绍了支持该算法大多数决策点的已发表证据,并指出了证据中的不足之处。此外,还给出了两个假设案例,说明该方法在优化多功能铰接式 AFO 以治疗特定步态病理力学方面的应用。该方法是作为一种循证指导的系统方法提出的,用于调整多功能铰接式 AFO。它利用观察到的步态偏差映射到AFO排列和阻力设置的特定变化,作为矫形治疗复杂神经肌肉步态障碍患者的临床工具。
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A proposed evidence-guided algorithm for the adjustment and optimization of multi-function articulated ankle-foot orthoses in the clinical setting
Individuals with neuromuscular pathologies are often prescribed an ankle-foot orthosis (AFO) to improve their gait mechanics by decreasing pathological movements of the ankle and lower limb. AFOs can resist or assist excessive or absent muscular forces that lead to tripping, instability, and slow inefficient gait. However, selecting the appropriate AFO with mechanical characteristics, which limit pathological ankle motion in certain phases of the gait cycle while facilitating effective ankle movement during other phases, requires careful clinical decision-making. The aim of this study is to propose an explicit methodology for the adjustment of multi-function articulated AFOs in clinical settings. A secondary aim is to outline the evidence supporting this methodology and to identify gaps in the literature as potential areas for future research. An emerging class of AFO, the multi-function articulated AFO, offers features that permit more comprehensive, iterative, and reversible adjustments of AFO ankle alignment and resistance to ankle motion. However, no standard method exists for the application and optimization of these therapeutic devices in the clinical setting. Here we propose an evidence-guided methodology applicable to the adjustment of multi-function articulated AFOs in the clinical setting. Characteristic load–deflection curves are given to illustrate the idealized yet complex resistance-angle behavior of multi-function articulated AFOs. Research is cited to demonstrate how these mechanical characteristics can help mitigate specific pathologic ankle and knee kinematics and kinetics. Evidence is presented to support the effects of systematic adjustment of high resistance, alignable, articulated AFOs to address many typical pathomechanical patterns observed in individuals with neuromuscular disorders. The published evidence supporting most decision points of the algorithm is presented with identified gaps in the evidence. In addition, two hypothetical case examples are given to illustrate the application of the method in optimizing multi-function articulated AFOs for treating specific gait pathomechanics. This method is proposed as an evidence-guided systematic approach for the adjustment of multi-function articulated AFOs. It utilizes observed gait deviations mapped to specific changes in AFO alignment and resistance settings as a clinical tool in orthotic treatment for individuals with complex neuromuscular gait disorders.
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