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在健康个体行走过程中,两种市售摇椅底鞋与传统运动鞋生物力学效应的随机比较。

A Randomized Comparison of the Biomechanical Effect of Two Commercially Available Rocker Bottom Shoes to a Conventional Athletic Shoe During Walking in Healthy Individuals.

作者信息

Talaty Mukul, Patel Sona, Esquenazi Alberto

机构信息

Gait and Motion Analysis Laboratory, MossRehab, Elkins Park, PA; The Pennsylvania State University, Abington College, Abington, PA.

New Jersey Institute of Technology, University Heights, Newark, NJ.

出版信息

J Foot Ankle Surg. 2016 Jul-Aug;55(4):772-6. doi: 10.1053/j.jfas.2016.03.008. Epub 2016 Apr 12.

Abstract

Rocker bottom shoes have recently gained considerable popularity, likely in part because of the many purported benefits, including reducing joint loading and toning muscles. Scientific inquiry about these benefits has not kept pace with the increased usage of this shoe type. A fundamental premise of rocker bottom shoes is that they transform hard, flat, level surfaces into more uneven ones. Published studies have described a variety of such shoes-all having a somewhat rounded bottom and a cut heel region or a cut forefoot region, or both (double rocker). Despite the fundamentally similar shoe geometries, the reported effects of rocker bottom shoes on gait biomechanics have varied considerably. Ten healthy subjects agreed to participate in the present study and were given appropriately sized Masai Barefoot Technology (St. Louis, MO), Skechers(™) (Manhattan Beach, CA), and New Balance (Boston, MA) conventional walking shoes. After a 12-day accommodation period, the subjects walked wearing each shoe while 3-dimensional motion and force data were collected in the gait laboratory. The key findings included (1) increased trunk flexion, decreased ankle plantarflexion range, and reduced plantarflexion moment in the early stance; (2) increased ankle dorsiflexion and knee flexor moment in the midstance; (3) decreased peak ankle plantarflexion in the late stance; and (4) decreased ankle plantarflexion and decreased hip flexor and knee extensor moments in the pre-swing and into swing phase. The walking speed was unconstrained and was maintained across all shoe types. A biomechanical explanation is suggested for the observed changes. Suggestions for cautions are provided for using rocker bottom shoes in patients with neuromuscular insufficiency.

摘要

摇椅底鞋近来颇受欢迎,部分原因可能是其宣称的诸多益处,包括减轻关节负荷和锻炼肌肉。针对这些益处的科学研究并未跟上这种鞋类使用量的增加。摇椅底鞋的一个基本前提是,它们能将坚硬、平坦、水平的表面转化为更不平坦的表面。已发表的研究描述了多种此类鞋子——均有某种程度的圆底以及后跟或前脚掌部位的切口区域,或两者皆有(双摇椅)。尽管鞋的几何形状基本相似,但摇椅底鞋对步态生物力学的报道影响差异很大。十名健康受试者同意参与本研究,并被给予尺码合适的马赛赤足科技(密苏里州圣路易斯)、斯凯奇(加利福尼亚州曼哈顿海滩)和新百伦(马萨诸塞州波士顿)传统步行鞋。经过12天的适应期后,受试者穿着每双鞋行走,同时在步态实验室收集三维运动和力数据。主要发现包括:(1)在初始站立期躯干前屈增加、踝关节跖屈范围减小以及跖屈力矩降低;(2)在中期站立期踝关节背屈和膝关节屈肌力矩增加;(3)在末期站立期踝关节跖屈峰值降低;(4)在摆动前期和进入摆动期踝关节跖屈降低以及髋关节屈肌和膝关节伸肌力矩降低。行走速度未受限制,且在所有鞋类中保持一致。针对观察到的变化提出了生物力学解释。对于神经肌肉功能不全患者使用摇椅底鞋给出了注意事项建议。

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