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在不跳跃的情况下,起始膝关节弯曲角度对增强式训练中肌肉活动和表现的影响。

Impact of Starting Knee Flexion Angle on Muscle Activity and Performance during Plyometrics without Jumping.

机构信息

Escuela de Kinesiología, Facultad de Ciencias de la Salud, Universidad de Las Américas, Viña Del Mar 2520000, Chile.

Department of Physical Education and Sports, Faculty of Sports Sciences, University of Granada, 18071 Granada, Spain.

出版信息

Sensors (Basel). 2023 Dec 20;24(1):44. doi: 10.3390/s24010044.

Abstract

Most of the existing research has focused on jump plyometrics, where landing reaction forces must be dissipated among lower limb articulations. In contrast, the investigation of resisted plyometrics without jumping, devoid of such landing forces, remains relatively limited. This study aimed to (i) investigate the impact of resisted plyometrics without jumping at two knee flexion angles (60 and 90 degrees) on vastus muscle activity relative to limb dominance and (ii) assess strength, power, and work during the concentric-eccentric phases of these exercises. Thirty-one healthy participants underwent quantification of lower limb muscle amplitude, strength, power, and work during resisted plyometrics without jumping from both 60° and 90° knee flexion positions. After anthropometric evaluations, participants used a dynamometer with a load equal to 80% of body weight while wireless surface electromyography electrodes recorded data. Statistical analyses utilized paired t-tests or nonparametric equivalents and set significance at ≤ 0.05. Results showed significantly higher muscle activity in the vastus medialis (VM) (dominant: 47.4%, = 0.0008, = 0.90; nondominant: 54.8%, = 0.047, = 0.88) and vastus lateralis (VL) (dominant: 46.9%, = 0.0004, = 0.86; nondominant: 48.1%, = 0.021, = 0.67) muscles when exercises started at 90° knee flexion, regardless of limb dominance. Substantial intermuscle differences occurred at both 60° (50.4%, = 0.003, = 0.56) and 90° (54.8%, = 0.005, = 0.62) knee flexion, favoring VM in the nondominant leg. Concentric and eccentric strength, power, and work metrics significantly increased when initiating exercises from a 90° position. In conclusion, commencing resisted plyometrics without jumping at a 90° knee flexion position increases VM and VL muscle activity, regardless of limb dominance. Furthermore, it enhances strength, power, and work, emphasizing the importance of knee flexion position customization for optimizing muscle engagement and functional performance.

摘要

大多数现有的研究都集中在跳跃式增强式训练上,在这种训练中,落地的反作用力必须在下肢关节之间消散。相比之下,对于没有跳跃、没有这种落地力的抗阻增强式训练的研究相对较少。本研究旨在:(i)研究在两个膝关节弯曲角度(60 和 90 度)下不进行跳跃的抗阻增强式训练对股四头肌活动相对于肢体优势的影响;(ii)评估这些练习的向心-离心阶段的力量、功率和功。31 名健康参与者在不进行跳跃的情况下,从 60°和 90°膝关节弯曲位置进行了抗阻增强式训练,同时对下肢肌肉幅度、力量、功率和功进行了量化。在人体测量评估后,参与者使用测力计,负载等于体重的 80%,同时无线表面肌电图电极记录数据。统计分析采用配对 t 检验或非参数等效方法,显著性水平设为 ≤ 0.05。结果显示,在膝关节弯曲 90°时,股直肌(VM)(优势侧:47.4%, = 0.0008, = 0.90;非优势侧:54.8%, = 0.047, = 0.88)和股外侧肌(VL)(优势侧:46.9%, = 0.0004, = 0.86;非优势侧:48.1%, = 0.021, = 0.67)肌肉的活动显著增加,无论肢体优势如何。在 60°(50.4%, = 0.003, = 0.56)和 90°(54.8%, = 0.005, = 0.62)膝关节弯曲时,肌肉之间存在显著差异,非优势腿的 VM 占优势。从 90°位置开始进行向心和离心运动时,力量、功率和功的指标显著增加。总之,从 90°膝关节弯曲位置开始进行不进行跳跃的抗阻增强式训练会增加 VM 和 VL 肌肉的活动,无论肢体优势如何。此外,它还增强了力量、功率和功,强调了根据膝关节弯曲位置定制来优化肌肉参与和功能表现的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/221b/10780924/3b678d0977b5/sensors-24-00044-g002.jpg

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