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Field-Based and Lab-Based Assisted Jumping: Unveiling the Testing and Training Implications

机译:基于现场和基于实验室的辅助跳跃:揭示测试和训练的含义

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>Purpose: Assisted jumping can supplement resistance training and traditional plyometric training to increase vertical jump performance. However, as coaches may choose to make field-based decisions based on lab-based research, this study determined whether a field-based assisted jumping set-up results in different ground contact times (CT), take off forces (TOF), flight times (FT), and impact forces (IF) compared to a lab-based set-up.>Methods: Eighteen active males (24.8 ± 3.0 yr; 178.8 ± 7.8 cm; 77.8 ± 7.8 kg) performed two sessions of assisted jumping: one with each hand holding a commercially available resistance band (1m) that was attached to a pull-up bar (FIELD), and the other with assistance from a custom-built system of ropes, pulleys, and long (3 m) elastic bands (LAB). With each set-up, subjects performed five sets of five countermovement jumps on a force plate. Each set was performed with either bodyweight (BW), 90, 80, 70, or 60% of BW, which was achieved by either grabbing higher or lower on the bands during FIELD, or by being pulled upward via a full-body harness during LAB. The order of each visit was counter-balanced, and the order of jumps within each visit was quasi-randomized. Data from the 90, 80, 70, and 60% trials for each set-up were then expressed relative to the data of BW jumps, and these relative values were then used for analysis.>Results: CTFIELD was less than CTLAB at 80, 70, and 60%. FTFIELD was greater than FTLAB at 90 and 80%, but FTLAB became greater at 60%. TOF and IF remained unchanged during LAB, but TOFFIELD was consistently less than TOF during BW, with IFFIELD generally being greater than IFLAB.>Conclusion: If the purpose of assisted jumping is to spend less time on the ground without decreasing force, systems with finite adjustments and longer bands like LAB should be used. However, shorter bands similar to FIELD may also be used; but due to the larger variability of assistance throughout the range of motion, such systems may alter the neuromuscular characteristics of the jump in other ways that should be investigated in future research.
机译:>目的:辅助跳跃可以补充阻力训练和传统的体能训练,以提高垂直跳跃性能。但是,由于教练可能会根据基于实验室的研究选择做出基于野外的决策,因此本研究确定了基于野外的辅助跳跃设置是否会导致不同的地面接触时间(CT),起飞力(TOF),飞行>方法:进行了18位活跃男性(24.8±3.0岁; 178.8±7.8厘米; 77.8±7.8公斤)分两次进行辅助跳跃:一次用一只手握住市售的阻力带(1m),该阻力带连接到上拉杆(FIELD),另一步在定制的绳索,滑轮和长绳系统的协助下进行(3 m)松紧带(LAB)。每次设置时,受试者在测力板上进行五组五个反跳动作。每组均以体重(BW),体重的90%,80%,70%或60%进行,这是通过在FIELD期间抓住带子的较高或较低,或在运动期间通过全身式安全带将其向上拉来实现的实验室每次访问的顺序是平衡的,并且每次访问内的跳跃顺序是准随机的。然后,相对于BW跳跃数据,表达了每种设置的90%,80%,70%和60%试验的数据,然后将这些相对值用于分析。>结果:CTFIELD为低于CTLAB的80%,70%和60%。 FTFIELD在90%和80%时大于FTLAB,但FTLAB在60%时更大。在LAB期间,TOF和IF保持不变,但在BW期间TOFFIELD始终小于TOF,而IFFIELD通常大于IFLAB。>结论:如果辅助跳跃的目的是在地面上花费较少的时间而没有减小力,应使用有限调整的系统和更长的频带,如LAB。但是,也可以使用类似于FIELD的较短频段;但是由于在整个运动范围内辅助的较大变化,此类系统可能会以其他方式改变跳跃的神经肌肉特征,应在以后的研究中对此进行研究。

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