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在水平和倾斜表面进行单侧下落跳任务时,中楔形足矫形器比薄型柔性足矫形器产生更大的生物力学效应。

Medially wedged foot orthoses generate greater biomechanical effects than thin-flexible foot orthoses during a unilateral drop jump task on level and inclined surfaces.

机构信息

Department of Human Kinetics, Université du Québec à Trois-Rivières, Canada; Groupe de Recherche sur les Affections Neuromusculosquelettiques (GRAN), Université du Québec à Trois-Rivières, Canada.

Department of Human Kinetics, Université du Québec à Trois-Rivières, Canada; Groupe de Recherche sur les Affections Neuromusculosquelettiques (GRAN), Université du Québec à Trois-Rivières, Canada.

出版信息

Clin Biomech (Bristol). 2024 Feb;112:106193. doi: 10.1016/j.clinbiomech.2024.106193. Epub 2024 Feb 1.

Abstract

BACKGROUND

Foot orthoses are therapeutic insoles designed to induce various effects on lower limb biomechanics. However, conflicting findings in previous research, highlight the need to better understand how foot orthoses with different features affect lower limb biomechanics during challenging tasks, particularly during unilateral drop jump landings.

METHODS

Seventeen participants with flat feet were recruited to participate in this cross-sectional descriptive study that examined the effects of thin-flexible foot orthoses and medially wedged foot orthoses on lower limb biomechanics during unilateral drop jump landings on level and valgus inclined surfaces. Midfoot, ankle, knee, and hip angles and moments were calculated and compared across conditions with repeated measures ANOVAs, using a statistical parametric mapping approach.

FINDINGS

Medially wedged and thin-flexible foot orthoses reduced ankle pronation and arch flattening during unilateral drop jump landings on level and valgus inclined surfaces. Medially wedged foot orthoses further decreased midfoot dorsiflexion and ankle eversion angles compared to thin-flexible foot orthoses. Medially wedged foot orthoses also generated greater effects on ankle kinetics and hip kinematics during unilateral drop jump landings.

INTERPRETATION

Medially wedged foot orthoses are more effective than thin-flexible foot orthoses in optimizing lower limb biomechanics during unilateral drop jump landings. While the biomechanical effects did not increase on inclined surfaces, medially wedged foot orthoses generated greater effects on proximal joints, highlighting their potential to improve hip stability and enhance overall lower limb function. Personalized foot orthoses selection based on specific biomechanical profiles should be further explored to optimize orthotic interventions benefiting individuals with musculoskeletal conditions.

摘要

背景

足矫形器是一种治疗性鞋垫,旨在对下肢生物力学产生各种影响。然而,先前研究中的相互矛盾的发现强调了需要更好地理解具有不同特征的足矫形器如何在具有挑战性的任务中影响下肢生物力学,特别是在单侧跳下着陆时。

方法

这项横断面描述性研究招募了 17 名扁平足参与者,以检查薄型灵活足矫形器和内侧楔形足矫形器在水平和外翻倾斜表面单侧跳下着陆时对下肢生物力学的影响。使用重复测量 ANOVA 和统计参数映射方法计算并比较了中足、踝关节、膝关节和髋关节角度和力矩在各条件下的变化。

发现

在水平和外翻倾斜表面的单侧跳下着陆时,内侧楔形和薄型灵活足矫形器减少了踝关节内翻和足弓扁平。与薄型灵活足矫形器相比,内侧楔形足矫形器进一步降低了中足背屈和踝关节外翻角度。内侧楔形足矫形器还在单侧跳下着陆时对踝关节动力学和髋关节运动学产生了更大的影响。

解释

与薄型灵活足矫形器相比,内侧楔形足矫形器在优化单侧跳下着陆时的下肢生物力学方面更有效。虽然在倾斜表面上生物力学效果没有增加,但内侧楔形足矫形器对近端关节产生了更大的影响,突出了它们改善髋关节稳定性和增强整体下肢功能的潜力。应该进一步探索基于特定生物力学特征的个性化足矫形器选择,以优化受益于肌肉骨骼状况的个体的矫形干预。

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