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Force-velocity properties' contribution to bilateral deficit during ballistic push-off

机译:弹道发射过程中力速特性对双边赤字的贡献

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PURPOSE: The objective of this study is to quantify the contribution of the force-velocity (F-v) properties to bilateral force deficit (BLD) in ballistic lower limb push-off and to relate it to individual F-v mechanical properties of the lower limbs. METHODS: The F-v relation was individually assessed from mechanical measurements for 14 subjects during maximal ballistic lower limb push-offs; its contribution to BLD was then investigated using a theoretical macroscopic approach, considering both the mechanical constraints of movement dynamics and the maximal external capabilities of the lower limb neuromuscular system. RESULTS: During ballistic lower limb push-off, the maximum force each lower limb can produce was lower during bilateral than unilateral actions, thus leading to a BLD of 36.7% ± 5.7%. The decrease in force due to the F-v mechanical properties amounted to 19.9% ± 3.6% of the force developed during BL push-offs, which represents a nonneural contribution to BLD of 43.5% ± 9.1%. This contribution to BLD that cannot be attributed to changes in neural features was negatively correlated to the maximum unloaded extension velocity of the lower limb (r = -0.977, P < 0.001). CONCLUSION: During ballistic lower limb push-off, BLD is due to both neural alterations and F-v mechanical properties, the latter being associated with the change in movement velocity between bilateral and unilateral actions. The level of the contribution of the F-v properties depends on the individual F-v mechanical profile of the entire lower limb neuromuscular system: the more the F-v profile is oriented toward velocity capabilities, the lower the loss of force from unilateral to bilateral push-offs due to changes in movement velocity.
机译:目的:本研究的目的是量化弹道下肢推脱中力速(F-v)特性对双侧力量不足(BLD)的贡献,并将其与下肢的各个F-v机械特性相关联。方法:在最大的弹道下肢俯卧撑期间,通过机械测量分别评估了14名受试者的F-v关系;然后使用理论上的宏观方法研究其对BLD的贡献,同时考虑运动动力学的机械约束和下肢神经肌肉系统的最大外部能力。结果:在弹道式下肢推举过程中,每个下肢在双侧动作期间可产生的最大力低于单侧动作,从而导致BLD为36.7%±5.7%。由于F-v力学性能而导致的力下降总计为BL推举过程中产生的力的19.9%±3.6%,这表示对BLD的非神经贡献为43.5%±9.1%。不能归因于神经特征变化的BLD贡献与下肢的最大空载伸展速度负相关(r = -0.977,P <0.001)。结论:在弹道下肢推举过程中,BLD是由于神经改变和F-v力学特性引起的,后者与双侧和单侧动作之间的运动速度变化有关。 Fv特性的贡献水平取决于整个下肢神经肌肉系统的Fv机械特征:Fv特征指向速度能力的方向越多,由于运动速度的变化。

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