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首页> 外文期刊>Journal of Biomechanics >Increased core stability is associated with reduced knee valgus during single-leg landing tasks: Investigating lumbar spine and hip joint rotational stiffness
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Increased core stability is associated with reduced knee valgus during single-leg landing tasks: Investigating lumbar spine and hip joint rotational stiffness

机译:单腿着陆任务期间,增加的核心稳定性与膝盖倒止阀减少相关:研究腰椎和髋关节旋转刚度

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摘要

Knee valgus during landing has been identified as a strong correlate of ACL injury. Inappropriate trunk control during landing contributes to high knee valgus, with neuromuscular factors related to core stability postulated as the mechanism. This investigation probed the influence of trunk and hip mechanics, including joint stiffness, on knee mechanics, particularly high knee valgus. Specifically, this study quantified lumbar spine and hip joint rotational stiffness (a proxy for mechanical joint stability) during single leg landing tasks known to be associated with injury risk, particularly in females. Kinematics, kinetics, and 24 channels of electromyography spanning the trunk and hip musculature were measured in 18 healthy female participants. Anatomically detailed EMG-driven musculoskeletal models quantified lumbar spine and hip joint rotational stiffness. The links between peak knee abduction angle and moment with lumbar spine and hip joint rotational stiffness were measured. Hip joint rotational stiffness influenced knee abduction across tasks (correlation coefficient ranging from-0.48 to-0.70, p 2021 Elsevier Ltd. All rights reserved.
机译:着陆时的膝外翻被认为与ACL损伤密切相关。着陆时躯干控制不当会导致高膝外翻,其机制是与核心稳定性相关的神经肌肉因素。本研究探讨了躯干和髋关节力学,包括关节刚度,对膝关节力学,尤其是高膝外翻的影响。具体而言,这项研究量化了单腿着地任务期间腰椎和髋关节旋转刚度(机械关节稳定性的代表),已知与受伤风险相关,尤其是女性。对18名健康女性参与者的躯干和髋关节肌肉组织进行运动学、动力学和24个肌电图通道的测量。解剖学上详细的肌电图驱动的肌肉骨骼模型量化了腰椎和髋关节旋转刚度。测量膝关节外展角峰值与腰椎力矩和髋关节旋转刚度之间的关系。髋关节旋转刚度对膝关节外展的影响(相关系数在0.48~0.70之间),P 2021爱思唯尔有限公司保留所有权利。

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