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Changes in Lower-Limb Biomechanics Soft Tissue Vibrations and Muscle Activation During Unanticipated Bipedal Landings

机译:下肢生物力学软组织振动和意外的两足动物着陆过程中肌肉激活的变化

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摘要

We aimed to explore the biomechanical differences between the anticipated drop jump and unanticipated drop landing. Twelve male collegiate basketball players completed an anticipated drop jump and unanticipated drop landing with double legs from a height of 30 cm. Kinematics, impact force, soft tissue vibrations, and electromyographic (EMG) amplitudes of the dominant leg were collected simultaneously. The anticipated drop jump showed more flexed lower limbs during landing and increased range of motion compared to the unanticipated drop landing. The anticipated drop jump also had lower impact force, lesser soft tissue vibration, and a greater damp coefficient at the thigh muscles compared with the unanticipated drop landing. Significant increases in the EMG amplitudes of the tibialis anterior, lateral gastrocnemius, rectus femoris, and biceps femoris were observed in the anticipated drop jump during the pre/post-activation and downward phases. The anticipated drop jump presented more optimized landing posture control with more joint flexion, lower impact force, less soft tissue vibrations, and full preparation of muscle activations compared with the unanticipated drop landing.
机译:我们旨在探索预期的液滴跳跃和意外的液滴着陆之间的生物力学差异。 12名大学男篮球运动员完成了预期的跳投和双腿从30厘米高处意外降落。同时收集优势腿的运动学,冲击力,软组织振动和肌电图(EMG)振幅。与未预期的下降着陆相比,预期的下降跳跃显示着陆时下肢弯曲得更多,运动范围增加。与意料之外的下降着陆相比,预期的下降跳跃还具有较低的冲击力,较小的软组织振动和在大腿肌肉处的较大的阻尼系数。观察到在激活前/激活后和下降阶段的预期下降跳跃中,胫骨前,外侧腓肠肌,股直肌和股二头肌的肌电图振幅显着增加。与意料之外的下降着陆相比,预期的下降跳跃表现出更加优化的着陆姿势控制,具有更大的关节屈曲,更低的冲击力,更少的软组织振动以及充分的肌肉激活准备。

著录项

  • 期刊名称 Journal of Human Kinetics
  • 作者

    Shen Zhang; Weijie Fu; Yu Liu;

  • 作者单位
  • 年(卷),期 2019(67),-1
  • 年度 2019
  • 页码 25–35
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类 G804.5;
  • 关键词

  • 入库时间 2022-08-17 11:52:04

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