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碳纤维定制动态矫形器刚度对步态期间下肢运动和负荷的影响:一项初步研究。

Effects of carbon fiber custom dynamic orthosis stiffness on lower limb motion and loading during gait: A pilot study.

作者信息

Anderson Kirsten M, Gari Wesley J, Magdziarz Sara M, Pacha Molly S, Anderson Donald D, Wilken Jason M

机构信息

1-152 MEB 500, Newton Road, Iowa City, IA 52242, United States.

2181 WL, 200 Newton Road, Iowa City, IA 52242, United States.

出版信息

Gait Posture. 2025 May 26;121:182-189. doi: 10.1016/j.gaitpost.2025.05.009.

Abstract

BACKGROUND

Traumatic lower limb injuries can have long-lasting detrimental effects. Carbon fiber custom dynamic orthoses (CDOs) are used to improve function, reduce pain, and alter foot loading following such injuries. Most prior investigations in this area have focused on very stiff CDOs designed to return patients back to physically demanding activities, with few studies evaluating more compliant CDOs.

RESEARCH QUESTION

Does CDO stiffness influence gait kinematics and kinetics, ground reaction forces, and forces acting on the foot in individuals following traumatic injury.

METHODS

Seven individuals who had sustained a unilateral distal tibia intra-articular fracture completed testing without an orthosis and in three CDOs of differing stiffnesses (Compliant, Moderate, Stiff). Biomechanical gait data were collected while participants walked at a controlled speed. Instrumented insoles were used to measure peak forces and force impulse for the hindfoot, midfoot, forefoot, and total foot.

RESULTS

Significant effects on joint kinematics and kinetics were primarily observed at the ankle. All CDOs significantly reduced ankle motion and power compared to walking without a CDO. Moderate and Stiff CDOs both significantly reduced knee flexion at initial contact. All CDOs significantly reduced peak medial and braking ground reaction forces compared to walking without a CDO. Peak hindfoot force was significantly reduced with Compliant and Stiff CDOs. Peak forefoot force and forefoot force impulse were significantly reduced with all CDOs. Large effect sizes were observed for most significant pairwise comparisons.

SIGNIFICANCE

Study CDOs similarly reduced ankle motion while allowing greater power generation compared to very stiff CDOs in previous publications. Peak hindfoot force, peak forefoot force, and forefoot force impulse were significantly reduced with CDO use. The limited effect of CDO stiffness on outcomes suggests that more compliant CDOs may be sufficient in individuals where pain with motion and loading is a primary consideration following traumatic injury.

摘要

背景

创伤性下肢损伤可能会产生长期的有害影响。碳纤维定制动态矫形器(CDO)用于改善功能、减轻疼痛并改变此类损伤后的足部负荷。该领域之前的大多数研究都集中在设计用于使患者恢复高强度体力活动的非常硬的CDO上,很少有研究评估更柔顺的CDO。

研究问题

CDO的刚度是否会影响创伤后个体的步态运动学和动力学、地面反作用力以及作用在足部的力。

方法

7名单侧胫骨远端关节内骨折患者在未佩戴矫形器以及佩戴三种不同刚度(柔顺、中等、硬)的CDO的情况下完成测试。在参与者以受控速度行走时收集生物力学步态数据。使用仪器化鞋垫测量后足、中足、前足和全足的峰值力和力冲量。

结果

主要在踝关节处观察到对关节运动学和动力学的显著影响。与不佩戴CDO行走相比,所有CDO均显著降低了踝关节运动和功率。中等刚度和硬刚度的CDO均显著降低了初始接触时的膝关节屈曲。与不佩戴CDO行走相比,所有CDO均显著降低了内侧峰值和制动地面反作用力。柔顺和硬刚度的CDO显著降低了后足峰值力。所有CDO均显著降低了前足峰值力和前足力冲量。在大多数显著的成对比较中观察到较大的效应量。

意义

与之前出版物中非常硬的CDO相比,研究中的CDO同样降低了踝关节运动,同时允许产生更大的功率。使用CDO后,后足峰值力、前足峰值力和前足力冲量均显著降低。CDO刚度对结果的影响有限,这表明在创伤后以运动和负荷时的疼痛为主要考虑因素的个体中,更柔顺的CDO可能就足够了。

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