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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Knee joint kinetics in response to multiple three-dimensional printed, customised foot orthoses for the treatment of medial compartment knee osteoarthritis
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Knee joint kinetics in response to multiple three-dimensional printed, customised foot orthoses for the treatment of medial compartment knee osteoarthritis

机译:膝关节动力学响应多个三维印刷,定制的脚,用于治疗内侧室膝关节膝关节骨关节炎

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摘要

The knee adduction moment is consistently used as a surrogate measure of medial compartment loading. Foot orthoses are designed to reduce knee adduction moment via lateral wedging. The dose' of wedging required to optimally unload the affected compartment is unknown and variable between individuals. This study explores a personalised approach via three-dimensional printed foot orthotics to assess the biomechanical response when two design variables are altered: orthotic length and lateral wedging. Foot orthoses were created for 10 individuals with symptomatic medial knee osteoarthritis and 10 controls. Computer-aided design software was used to design four full and four three-quarter-length foot orthoses per participant each with lateral posting of 0 degrees neutral', 5 degrees rearfoot, 10 degrees rearfoot and 5 degrees forefoot/10 degrees rearfoot. Three-dimensional printers were used to manufacture all foot orthoses. Three-dimensional gait analyses were performed and selected knee kinetics were analysed: first peak knee adduction moment, second peak knee adduction moment, first knee flexion moment and knee adduction moment impulse. Full-length foot orthoses provided greater reductions in first peak knee adduction moment (p = 0.038), second peak knee adduction moment (p = 0.018) and knee adduction moment impulse (p = 0.022) compared to three-quarter-length foot orthoses. Dose effect of lateral wedging was found for first peak knee adduction moment (p < 0.001), second peak knee adduction moment (p < 0.001) and knee adduction moment impulse (p < 0.001) indicating greater unloading for higher wedging angles. Significant interaction effects were found for foot orthosis length and participant group in second peak knee adduction moment (p = 0.028) and knee adduction moment impulse (p = 0.036). Significant interaction effects were found between orthotic length and wedging condition for second peak knee adduction moment (p = 0.002). No significant changes in first knee flexion moment were found. Individual heterogeneous responses to foot orthosis conditions were observed for first peak knee adduction moment, second peak knee adduction moment and knee adduction moment impulse. Biomechanical response is highly variable with personalised foot orthoses. Findings indicate that the tailoring of a personalised intervention could provide an additional benefit over standard interventions and that a three-dimensional printing approach to foot orthosis manufacturing is a viable alternative to the standard methods.
机译:膝关节内部瞬间始终用作内侧隔室负荷的替代衡量标准。脚矫形器旨在通过横向楔入减少膝盖内部瞬间。需要最佳地卸下受影响的隔间所需的剂量'是个体之间的未知和可变的。本研究通过三维印刷脚矫形器探讨了个性化方法,以评估当改变两个设计变量时的生物力学响应:矫形长度和横向楔形。为10名患有症状内侧膝关节骨关节炎和10个对照组的脚畸形。计算机辅助设计软件用于每个参与者设计四个完整的四分之一,每个参与者的四分之一长度偏离0度中性的横向张力,5度后脚,10度后脚和5度前脚/ 10度后脚。三维打印机用于制造所有脚矫形器。进行三维步态分析,分析了膝关节动力学:第一峰膝关节瞬间,第二峰膝关节瞬间,第一膝弯曲力矩和膝关节脉冲脉冲。全长脚矫形器在第一峰膝关节内容(P = 0.038)中提供了更大的减少(P = 0.038),第二峰膝关节矩(P = 0.018)和膝关节脉冲(P = 0.022)与三季度长度偏离相比。侧向楔形的剂量效果是针对第一峰膝关节矩(P <0.001),第二峰膝关节(P <0.001)和膝关节脉冲(P <0.001)表示更高的楔形角度。在第二峰膝关节血管内血管内和参与者组(P = 0.028)和膝关节内容脉冲(P = 0.036)中发现了显着的相互作用效应(P = 0.036)。在第二峰膝关节末末末末末期和楔入条件之间发现了显着的相互作用效应(P = 0.002)。发现了第一膝屈曲力矩没有重大变化。为首次峰值膝关节内容,第二峰膝关节和膝关节脉冲时,观察到对脚矫差条件的个体异质反应。生物力学响应与个性化的脚垂直是高度变化的。调查结果表明,个性化干预的裁缝可以提供对标准干预的额外益处,并且脚矫形器制造的三维印刷方法是标准方法的可行替代品。

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