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Development and evaluation of instrumented soccer equipment to collect ankle joint kinematics in the field.

机译:在现场收集脚踝关节运动学的仪器化足球设备的开发和评估。

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摘要

Ankle sprains commonly occur during athletic competition and result in traumatic injury to the lateral ligament complex. Ankle ligament sprains are the most common injury type for intercollegiate soccer players and athletes that sustain lateral ankle sprains may lose game and/or practice time, have recurrent sprains due to ankle instability, incur proprioceptive deficits, and be at an increased risk of ankle osteoarthritis. The high rate of ankle injuries among soccer athletes demonstrates a need for novel and advanced data collection methodologies to reduce the incidence of lateral ankle sprains and improve injury prevention interventions.;The purposes of this study were to develop instrumented soccer equipment to collect ankle joint kinematics in the field; establish the reliability and validity of a kinematic assessment using instrumented equipment during athletic maneuvers; and identify laboratory maneuvers that elicited game-like demands from athletes. Wireless orientation sensors were integrated into soccer shin guards and turf shoes. The instrumented equipment collected ankle joint kinematics during simulated athletic maneuvers in the laboratory and field. The simulated athletic maneuvers in the laboratory are commonly performed by soccer players and have been previously studied. Maneuvers included drop landing, drop jump, stop jump, and jump-stop cut. Drop landing and drop jump maneuvers resulted in poor to excellent reliability and very good to excellent validity. The stop jump maneuver resulted in poor to fair reliability and excellent validity. The jump-stop cut maneuver resulted in poor to excellent reliability and very good validity. The soccer-specific field maneuvers were jump header, moving jump header, and slalom. All maneuvers resulted in poor to good reliability.;To identify laboratory maneuvers that elicited game-like demands, laboratory maneuvers of varied demand were compared to field maneuvers. Drop landing and drop jump maneuvers from a 60 cm platform elicited a similar response to the jump header maneuver. A jump distance recommendation for the stop jump maneuver was not warranted because jump distance did not significantly alter landing biomechanics. The instrumented equipment collected reliable and valid ankle joint kinematics in the sagittal plane and are a promising technology for in-game data collection and injury prevention.
机译:踝关节扭伤通常发生在体育比赛中,并导致对外侧韧带复合体的损伤。脚踝韧带扭伤是大学生之间最常见的损伤类型,承受外侧脚踝扭伤可能会失去比赛和/或练习时间,由于脚踝不稳而反复发作扭伤,引起本体感受缺陷,并且脚踝骨关节炎的风险增加。足球运动员的高脚踝受伤率表明需要一种新颖而先进的数据收集方法,以减少侧脚踝扭伤的发生率,并改善损伤预防干预措施。;本研究的目的是开发仪器化足球设备以收集脚踝关节运动学信息在该领域;在运动过程中使用仪器设备确定运动学评估的可靠性和有效性;并确定引起运动员类似游戏要求的实验室动作。无线方向传感器已集成到足球护胫和草皮鞋中。在实验室和野外进行模拟运动时,仪器将收集踝关节运动学信息。在实验室中,模拟的运动动作通常由足球运动员执行,并且之前已经进行过研究。演习包括下降落地,下降跳,停止跳和停跳剪切。跌落着陆和跌落跳跃动作导致可靠性差至极好,有效性极好。停止跳跃动作导致差到相当的可靠性和出色的有效性。跳停式切割动作导致极差的可靠性和非常好的有效性。足球专用的田径动作是跳跃头,移动跳跃头和激流回旋。所有的操作都会导致可靠性差到良好。为了识别引发类似游戏需求的实验室操作,将需求量不同的实验室操作与现场操作进行了比较。从60厘米平台进行的落地着陆和跳跃跳跃动作对跳跃头动作做出了类似的响应。由于跳跃距离不会显着改变着陆生物力学,因此不建议针对停止跳跃动作提出跳跃距离建议。仪器可在矢状面收集可靠且有效的踝关节运动学,是用于游戏中数据收集和伤害预防的有前途的技术。

著录项

  • 作者

    Akins, Jonathan Stephen.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Engineering Biomedical.;Biophysics Biomechanics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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