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Relationships between lower-body muscle structure and, lower-body strength, explosiveness and eccentric leg stiffness in adolescent athletes

机译:青少年运动员下半身肌肉结构与下半身力量,爆发力和偏心腿僵硬度之间的关系

摘要

The purpose of the present study was to determine whether any relationships were present between lower-body muscle structure and, lower-body strength, variables measured during a counter-movement jump (CMJ) and squat jump (SJ), and eccentric leg stiffness, in adolescent athletes. Thirty junior male (n = 23) and female (n = 7) surfing athletes (14.8 ± 1.7 y; 1.63 ± 0.09 m; 54.8 ± 12.1 kg) undertook lower-body muscle structure assessment with ultrasonography and performed a; CMJ, SJ and an isomet-ric mid-thigh pull (IMTP). In addition, eccentric leg stiffness was calculated from variables of the CMJ and IMTP. Moderate to very large relationships (r = 0.46-0.73) were identified be-tween the thickness of the vastus lateralis (VL) and lateral gas-trocnemius (LG) muscles, and VL pennation angle and; peak force (PF) in the CMJ, SJ and IMTP. Additionally, moderate to large relationships (r = 0.37-0.59) were found between eccentric leg stiffness and; VL and LG thickness, VL pennation angle, and LG fascicle length, with a large relationship (r = 0.59) also present with IMTP PF. These results suggest that greater thick-ness of the VL and LG were related to improved maximal dy-namic and isometric strength, likely due to increased hypertro-phy of the extensor muscles. Furthermore, this increased thickness was related to greater eccentric leg stiffness, as the associated enhanced lower-body strength likely allowed for greater neuromuscular activation, and hence less compliance, during a stretch-shortening cycle.
机译:本研究的目的是确定下身肌肉结构与下身力量,反向运动跳跃(CMJ)和深蹲跳跃(SJ)期间测量的变量以及偏心腿僵硬之间是否存在任何关系,在青少年运动员中。 30名初级冲浪男(n = 23)和女性(n = 7)冲浪运动员(14.8±1.7 y; 1.63±0.09 m; 54.8±12.1 kg)进行了超声检查下肢肌肉结构并进行了a; CMJ,SJ和大腿中段等速(IMTP)。此外,根据CMJ和IMTP的变量计算了偏心腿的僵硬度。在股外侧肌(VL)和外侧腓肠肌(LG)的厚度以及VL垂度角度之间确定了中等到非常大的关系(r = 0.46-0.73)。 CMJ,SJ和IMTP中的最大力(PF)。此外,偏心腿的僵硬程度与大腿之间存在中等到大的关系(r = 0.37-0.59)。 IMTP PF还具有VL和LG厚度,VL垂度角和LG束长度,二者之间存在较大的关系(r = 0.59)。这些结果表明,更大的VL和LG厚度与改善的最大动态和等距强度有关,这可能是由于伸肌的肥大性增加所致。此外,这种增加的厚度与更大的偏心腿部刚度有关,因为相关的增强的下半身力量可能允许在拉伸缩短周期中更大的神经肌肉激活,从而降低顺应性。

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