Suppr超能文献

跑步速度是否会影响非后足着地跑者在不同纵向弯曲刚度的鞋类中关节水平力学的反应?

Does running speed affect the response of joint level mechanics in non-rearfoot strike runners to footwear of varying longitudinal bending stiffness?

机构信息

Department of Human Physiology, University of Oregon, Eugene, OR, USA.

Department of Human Physiology, University of Oregon, Eugene, OR, USA.

出版信息

Gait Posture. 2021 Feb;84:187-191. doi: 10.1016/j.gaitpost.2020.11.029. Epub 2020 Dec 8.

Abstract

BACKGROUND

Modifying the longitudinal bending stiffness (LBS) of footwear has become a popular method to improve sport performance. It has been demonstrated to influence running economy by altering lower extremity joint level mechanics. Previous studies have only examined within-participant effects at one running speed.

RESEARCH QUESTION

Do joint level mechanics differ in response to varying footwear LBS at a range of running speeds?

METHODS

This study utilized a cross-sectional repeated measure study design using a convenience sample. Ten well trained non-rearfoot strike male distance runners ran at 3.89, 4.70, and 5.56 m/s (14, 17, 20 km/hr) in footwear of three different LBS levels. Mechanics and energetics of the metatarsophalangeal joint (MTPJ), ankle, knee, and hip joints during stance phase were assessed using an 8-camera optical motion capture system (f = 200 Hz), a force instrumented treadmill (f = 1000 Hz) and standard inverse dynamics theory.

RESULTS

Range of motion and negative work decreased and angular stiffness increased for the MTPJ with increasing LBS at all speeds (p < .001). Peak MTPJ moment did not change at any speed in response to increased LBS. Negative work at the ankle decreased in the stiff shoe at 17 km/hr (p = .036). Peak ankle plantar flexion velocity decreased with increasing LBS at all speeds (p < .05).

SIGNIFICANCE

While changes in MTPJ mechanics were consistent across speeds, decreased negative ankle work was only observed at 17 km/hr in the stiff shoe, suggesting that perhaps tuned footwear LBS may need to focus primarily on metabolically beneficial changes in ankle plantar flexor mechanical behavior to improve performance in distance runners. Tuning footwear stiffness may also be beneficial to clinical populations, as clinicians seek to optimize their patients' locomotion economy.

摘要

背景

改变鞋类的纵向弯曲刚度(LBS)已成为提高运动表现的一种流行方法。它已被证明通过改变下肢关节水平力学来影响跑步经济性。以前的研究仅在一个跑步速度下检查了参与者内的影响。

研究问题

在一系列跑步速度下,改变鞋类的 LBS 是否会导致关节水平力学的不同反应?

方法

本研究采用便利样本的横断面重复测量研究设计。10 名训练有素的非后足着地男性长跑运动员以 3.89、4.70 和 5.56 m/s(14、17、20 公里/小时)的速度穿着三种不同 LBS 水平的鞋子跑步。使用 8 个相机光学运动捕捉系统(f = 200 Hz)、带有测力跑步机(f = 1000 Hz)和标准逆动力学理论,评估了站立阶段的跖趾关节(MTPJ)、踝关节、膝关节和髋关节的力学和能量学。

结果

随着 LBS 的增加,所有速度下 MTPJ 的运动范围和负功减少,角刚度增加(p <.001)。在任何速度下,增加 LBS 都不会导致 MTPJ 峰值力矩发生变化。在 17 公里/小时的硬鞋中,踝关节的负功减少(p =.036)。在所有速度下,随着 LBS 的增加,踝关节跖屈速度的峰值下降(p <.05)。

意义

虽然 MTPJ 力学的变化在速度上是一致的,但只有在硬鞋中以 17 公里/小时的速度观察到踝关节负功减少,这表明可能需要调整鞋类的 LBS,主要关注踝关节跖屈肌机械行为的代谢有益变化,以提高长跑运动员的表现。调整鞋类的刚度可能对临床人群也有益,因为临床医生试图优化患者的运动经济性。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验