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三种旨在减少膝关节最大外展力矩的步态修正方法的运动学步态参数之间的关系。

Relationship between kinematic gait parameters during three gait modifications designed to reduce peak knee abduction moment.

机构信息

Sports Medicine Assessment, Research & Testing (SMART) Laboratory, George Mason University, Manassas, VA, United States.

Department of Statistics, George Mason University, Fairfax, VA, United States.

出版信息

Knee. 2021 Jan;28:229-239. doi: 10.1016/j.knee.2020.12.006. Epub 2021 Jan 8.

Abstract

PURPOSE

Gait modifications designed to change a single kinematic parameter have reduced first peak internal knee abduction moment (PKAM). Prior research suggests unintended temporospatial and kinematic changes occur naturally while performing these modifications. We aimed to investigate i) the concomitant kinematic and temporospatial changes and ii) the relationship between gait parameters during three gait modifications (toe-in, medial knee thrust, and trunk lean gait).

METHODS

Using visual real-time biofeedback, we collected 10 trials for each modification using individualized target gait parameters based on participants' baseline mean and standard deviation. Repeated measures ANOVA was performed to determine significant differences between conditions. Mixed effects linear regression models were then used to estimate the linear relationships among variables during each gait modification. All modifications reduced KAM by at least 5%.

RESULTS

Modifications resulted in numerous secondary changes between conditions such as increased knee abduction during toe-in gait and increased knee flexion with medial knee thrust. Within gait modifications, relationships between kinematic parameters were similar for toe-in gait and medial knee thrust (i.e. increased toe-in and decreased knee abduction), while increased trunk lean showed no relationship with any other kinematic parameters during trunk lean trials.

CONCLUSION

Two main mechanisms were found as a result of this investigation; the first being a pattern of toeing-in, knee abduction, flexion, and internal hip rotation, while trunk lean modification presented as a separate gait pattern with limited secondary changes. Future studies should consider providing feedback on multiple linked parameters, as it may feel more natural and optimize KAM reductions.

摘要

目的

旨在改变单一运动学参数的步态修改可降低膝关节内收的首峰值(PKAM)。先前的研究表明,在执行这些修改时,会自然出现预期外的时空间和运动学变化。我们旨在研究:i)伴随的运动学和时空间变化;ii)三种步态修改(足内翻、内侧膝推力和躯干倾斜步态)期间步态参数之间的关系。

方法

使用视觉实时生物反馈,根据参与者的基线平均值和标准差,针对每个修改使用个体化的目标步态参数,我们收集了 10 个试验。使用重复测量方差分析确定条件之间的显著差异。然后,使用混合效应线性回归模型来估计每个步态修改期间变量之间的线性关系。所有修改均将 KAM 降低至少 5%。

结果

修改导致条件之间出现了许多次要变化,例如足内翻步态中的膝关节外展增加,内侧膝推力中的膝关节屈曲增加。在步态修改中,足内翻步态和内侧膝推力的运动学参数之间的关系相似(即,足内翻增加和膝关节外展减少),而躯干倾斜试验中增加的躯干倾斜与任何其他运动学参数均无关系。

结论

该研究发现了两种主要机制;第一种是一种足内翻、膝关节外展、屈曲和髋关节内旋的模式,而躯干倾斜的修改呈现为一种具有有限次要变化的单独步态模式。未来的研究应考虑提供多个关联参数的反馈,因为这可能感觉更自然,并优化 KAM 的降低。

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