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Functional variability in the flight phase of one metre springboard forward dives

机译:一米的飞行阶段的功能变异性跳板前进潜水

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摘要

In springboard diving, low variability in takeoff conditions and in the somersault orientation angle at water entry is to be expected since consistency and accuracy are necessary for a good dive. A diver's adjustment of body configuration during flight may be a deliberate compensation for variations in takeoff conditions, leading to increased joint angle variability and decreased entry angle variability. The aim of this research was to investigate the extent to which a diver pre-plans the aerial phase and then makes adjustments in flight to control the entry angle in one metre springboard forward dives. Performances of 15 forward pike dives and 15 forward 21/2 somersault pike dives, performed by an international diver were video recorded at 250 Hz. Joint centres during flight were digitized and their spatial coordinates were subsequently reconstructed using the Direct Linear Transformation in order to determine orientation and configuration angles. A computer simulation model was used to investigate the effects of variability in takeoff conditions and configuration variability in flight on the variability of the orientation angle at water entry. The amount of variation in the somersault orientation angle at entry as determined using simulations based on the variability in the takeoff conditions was four times greater than the variation in the recorded performances. It was concluded that the diver used open loop control for the first half of the flight phase and subsequently used feedforward and feedback control to make timing adjustments of hip and arm angles to reduce the variability of his entry orientation angle.
机译:在跳板潜水中,在水处理处的起飞条件和翻盖方向角度的低变异是预期的,因为良好的潜水是必要的一致性和准确性。潜水员在飞行期间的身体配置的调整可能是对起飞条件的变化进行故意补偿,导致接合角度变异性和进入角度变异性降低。该研究的目的是调查潜水员预先计划航空阶段的程度,然后在飞行中进行调整,以控制一米的跳板前潜水中的入口角度。由国际潜水员执行的15名前进派克潜水和15前进的21/2翻筋斗派克潜水的表演是在250赫兹录制的视频。飞行期间的关节中心被数字化,随后使用直接线性变换来重建它们的空间坐标,以便确定取向和配置角度。一种计算机仿真模型用于调查可变性变异性的影响以及在水处理方向方面的方向变异性方面的变化。基于起飞条件的可变性的模拟确定的进入的综合取向角的变化量比记录的性能的变化大4倍。得出结论是,潜水员使用了飞行相的前半部分的开环控制,随后使用了前馈和反馈控制,使臀部和臂角度的定时调节,以降低他的入口方向角的可变性。

著录项

  • 来源
    《Human movement science》 |2018年第2018期|共10页
  • 作者单位

    Loughborough Univ Technol Sch Sport Exercise &

    Hlth Sci Ashby Rd Loughborough LE11 3TU Leics;

    Loughborough Univ Technol Sch Sport Exercise &

    Hlth Sci Ashby Rd Loughborough LE11 3TU Leics;

    Loughborough Univ Technol Sch Sport Exercise &

    Hlth Sci Ashby Rd Loughborough LE11 3TU Leics;

    Loughborough Univ Technol Sch Sport Exercise &

    Hlth Sci Ashby Rd Loughborough LE11 3TU Leics;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学心理学、病理心理学;
  • 关键词

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