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治疗前足内翻继发柔韧性平足症的非处方矫形设备的比较生物力学效果

Comparative biomechanical effectiveness of over-the-counter devices for individuals with a flexible flatfoot secondary to forefoot varus.

机构信息

Department of Orthopedic Surgery, Motion Analysis Laboratory, Mayo Clinic, Rochester, Minnesota, USA.

出版信息

Clin J Sport Med. 2010 Nov;20(6):428-35. doi: 10.1097/JSM.0b013e3181fb539f.

DOI:10.1097/JSM.0b013e3181fb539f
PMID:21079438
Abstract

OBJECTIVES

Evaluate effects of a new off-the-shelf insert on frontal plane foot biomechanics and compare effectiveness of the new and an existing off-the-shelf insert and a motion-control shoe in neutralizing frontal plane foot biomechanics.

DESIGN

Descriptive.

SETTING

Biomechanics laboratory.

PARTICIPANTS

Fifteen uninjured subjects with a flexible flatfoot secondary to forefoot varus.

ASSESSMENT OF RISK FACTORS

Three-dimensional kinematic and kinetic data were collected as subjects walked and jogged at their self-selected speed while wearing a motion-control running shoe, the shoe with a new off-the-shelf insert, and the shoe with an existing off-the-shelf insert.

MAIN OUTCOME MEASURES

Frontal plane kinematics and rearfoot kinetics were evaluated during stance. Statistical analysis was performed using a repeated measures analysis of variance and Student-Newman-Keuls post hoc tests (α ≤ 0.05).

RESULTS

The new insert and motion-control shoe placed the forefoot in a less-everted position than the existing off-the-shelf insert during walking. There were no differences in forefoot kinematics during jogging, nor were there differences in rearfoot motion during walking or jogging. The rearfoot eversion moment was significantly lower with the new off-the-shelf insert compared with the motion-control shoe and the existing insert during walking and jogging.

CONCLUSIONS

A new off-the-shelf device is available that promotes more neutral frontal plane biomechanics, thus providing a theoretical rationale for using this device for injury prevention and treatment. The comparative biomechanical effectiveness of a motion-control shoe and the orthotic inserts may assist health care professionals in selecting a device to correct the flatfoot structure.

摘要

目的

评估一种新的现成插入物对额状面足生物力学的影响,并比较新的和现有的现成插入物以及运动控制鞋在中和额状面足生物力学方面的效果。

设计

描述性研究。

地点

生物力学实验室。

参与者

15 名无损伤的前足内翻继发于前脚旋后患者。

风险因素评估

当受试者以自我选择的速度行走和慢跑时,收集了三维运动学和动力学数据,同时穿着运动控制跑鞋、带有新的现成插入物的鞋子和带有现有的现成插入物的鞋子。

主要观察指标

在站立时评估额状面运动学和后足动力学。使用重复测量方差分析和学生-纽曼-凯尔斯事后检验(α≤0.05)进行统计分析。

结果

与现有的现成插入物相比,新插入物和运动控制鞋在行走时将前脚置于更外翻的位置。在慢跑时,前脚的运动学没有差异,行走或慢跑时后足的运动也没有差异。与运动控制鞋和现有的插入物相比,新的现成插入物在行走和慢跑时后足外翻力矩显著降低。

结论

现有的现成装置可促进更中立的额状面生物力学,从而为使用该装置进行损伤预防和治疗提供了理论依据。运动控制鞋和矫形插入物的比较生物力学效果可能有助于医疗保健专业人员选择一种纠正扁平足结构的装置。

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