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首页> 外文期刊>The Journal of sports medicine and physical fitness >Biomechanical comparison of forward and lateral lunges at varying step lengths
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Biomechanical comparison of forward and lateral lunges at varying step lengths

机译:不同步长的前弓步和侧弓步的生物力学比较

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Aim. Lunges are commonly included in rehabilitation and strength training programs; however limited information regarding differences between lateral and forward lunges with varying step lengths in young adults exists. The current study compared sagittal plane joint kinematics and kinetics between forward and lateral lunges using self-selected and standardized (60% height) step lengths. Methods. Thirty-two young adults (16 men, 16 women) completed six lunges of each direction/distance combination while stepping (dominant) limb ankle, knee, and hip peak flexion and net joint extensor moment impulse were quantified. Results. While lateral direction (P=0.063) step lengths were statistically equal between self-selected and standardized lunges, forward self-selected distances were 10% less than the standardized (P<0.001). Compared to forward lunges, lateral lunge ankle flexion was 83.5% greater (P<0.001) for standard and 55.3% greater (P<0.001) for self-selected distances. Knee flexion was 12.8% greater (P<0.001) during forward lunges compared to lateral lunges, with no significant hip direction differences. Ankle impulse during the lateral lunges was 71.3% greater (P<0.001) compared to forward lunges. Lateral lunge knee impulse was 47.6% greater (P<0.001) for standardized and 16.9% greater (P=0.001) for self-selected distances compared to forward lunges. Forward lunge hip impulse was 64.5% greater for the standardized (P<0.001) and 44.6% greater for self-selected (P<0.001) distances compared to lateral lunges. Conclusion. Forward lunges, particularly using 60% body height step length, appear to place the greatest demands on the hip extensors. Lateral lunges prompted greater ankle flexion and greater ankle and knee extensor kinetic contributions. These data provide rationale for lunge variation selection for young adults.
机译:目标。肺通常包括在康复和力量训练计划中;然而,关于年轻人中侧步和前弓步步长不同的信息有限。当前的研究使用自行选择和标准化(60%高度)的步长比较了前弓箭和侧弓箭之间的矢状面关节运动学和动力学。方法。 32名年轻成年人(16名男性,16名女性)完成了每种方向/距离组合的六个弓步,同时对(主要)肢体脚踝,膝盖和髋部峰值屈曲和净关节伸肌力矩冲动进行了量化。结果。自选和标准弓步之间的横向方向(P = 0.063)步长在统计上相等,而向前的自选距离则比标准步距小10%(P <0.001)。与向前的弓步相比,标准步距的外侧弓步踝关节弯曲度增加了83.5%(P <0.001),而对于自选距离,则增加了55.3%(P <0.001)。与外侧弓步相比,向前弓步的膝盖屈曲幅度增加了12.8%(P <0.001),髋关节方向没有明显差异。与向前的弓步相比,外侧弓步的脚踝冲动增加71.3%(P <0.001)。与向前的弓步相比,标准弓步的外侧弓步膝盖冲动提高了47.6%(P <0.001),而对于自选距离,则提高了16.9%(P = 0.001)。与侧向弓步相比,标准弓距(P <0.001)向前弓步的髋关节冲动要大64.5%,而自选距离(P <0.001)向前的冲刺要大44.6%。结论。向前的弓步,尤其是使用60%的身高步长,似乎对臀部伸肌提出了最大的要求。外侧弓步促使更大的踝关节屈曲以及更大的踝关节和膝盖伸肌动力学贡献。这些数据为年轻人弓箭变异选择提供了依据。

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