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Full Step Cycle Kinematic and Kinetic Comparison of Barefoot Walking and a Traditional Shoe Walking in Healthy Youth: Insights for Barefoot Technology

机译:赤脚行走的全步循环运动和动力学比较和在健康青年中走路的传统鞋子:赤脚技术见解

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摘要

Objective. Barefoot technology shoes are becoming increasingly popular, yet modifications are still needed. The present study aims to gain valuable insights by comparing barefoot walking to neutral shoe walking in a healthy youth population. Methods. 28 healthy university students (22 females and 6 males) were recruited to walk on a 10-meter walkway both barefoot and in neutral running shoes at their comfortable walking speed. Full step cycle kinematic and kinetic data were collected using an 8-camera motion capture system. Results. In the early stance phase, the knee extension moment (MK1), the first peak absorbed joint power at the knee joint (PK1), and the flexion angle of knee/dorsiflexion angle of the ankle were significantly reduced when walking in neutral running shoes. However, in the late stance, barefoot walking resulted in decreased hip joint flexion moment (MH2), second peak extension knee moment (MK3), hip flexors absorbed power (PH2), hip flexors generated power (PH3), second peak absorbed power by knee flexors (PK2), and second peak anterior-posterior component of joint force at the hip (APFH2), knee (APFK2), and ankle (APFA2). Conclusions. These results indicate that it should be cautious to discard conventional elements from future running shoe designs and rush to embrace the barefoot technology fashion.
机译:客观的。赤脚技术鞋正在变得越来越受欢迎,但仍然需要修改。本研究旨在通过将赤脚行走到健康青年人口走向中性的鞋子来获得有价值的见解。方法。 28个健康的大学生(22名女性和6名男性)被招募了在赤脚和中性跑步鞋的10米的走道上行走,以舒适的步行速度。使用8相机运动捕获系统收集完整步骤循环运动和动力学数据。结果。在早期姿势阶段,膝关节(PK1)的膝盖延伸力矩(MK1),第一峰值吸收接头功率和踝关节的膝关节/背部角度的屈曲角度显着降低。但是,在晚期姿势,赤脚行走导致髋关节屈曲力矩(MH2)减少(MH2),第二峰延伸膝关节(MK3),髋部屈肌吸收功率(PH2),髋部屈曲功率(PH3),第二峰值吸收功率膝关节屈曲(PK2)和髋关节(APFH2),膝关节(APFK2)和踝关节(APFA2)的第二峰前后部件。结论。这些结果表明,丢弃来自未来运行鞋设计的常规元素并急于接受赤脚技术时尚的常规元素应该谨慎。

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  • 来源
    《Applied bionics and biomechanics》 |2017年第2017期|共7页
  • 作者单位

    Sun Yat Sen Univ Affiliated Hosp 1 Dept Rehabil Med Guangzhou 510080 Guangdong Peoples R China;

    Sun Yat Sen Univ Affiliated Hosp 7 Dept Neurol Shenzhen 518107 Peoples R China;

    Sun Yat Sen Univ Affiliated Hosp 1 Dept Rehabil Med Guangzhou 510080 Guangdong Peoples R China;

    US Navy Med Ctr Portsmouth Dept Radiol CDR MC USN Portsmouth VA 23708 USA;

    Calif State Univ East Bay Dept Kinesiol Hayward CA 94542 USA;

    Univ Virginia Dept Orthopaed Surg &

    Mech Engn Mot Anal &

    Motor Performance Lab Charlottesville VA 22903 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仿生学;
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