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疲劳对双侧深蹲中线性和角度运动学的影响。

The effects of fatigue on linear and angular kinematics during bilateral squat.

机构信息

Department of Coaching Education, Institute of Health Sciences, Ege University, Izmir, Turkey.

Coaching Education Department, Faculty of Sport Sciences, Ege University, Izmir, Turkey.

出版信息

PLoS One. 2023 Nov 27;18(11):e0289089. doi: 10.1371/journal.pone.0289089. eCollection 2023.

Abstract

This study was aimed to analyze in detail how the fatigue effects to kinematic parameters of body weight squat exercise (BSQ) by dividing a squat cycle into four different regions. Twenty-one male athletes participated in this study. Participants were divided into two groups according to their lower limb muscle ratio (LLMR). The BSQ was performed until participants were unable to continue the exercise due to the fatigue. Linear and angular kinematics were obtained by motion analysis software which has high validity and reliability. There was no significant but had large effect size interaction between fatigue conditions and LLMR groups in terms of knee ROM in the extension phase and hip angular velocity in braking phase of the flexion (0.08 > p >0.05, 0.18 > [Formula: see text] > 0.16). Fatigue condition did not have a significant effect on the duration in the acceleration and braking phases of BSQ (p > 0.05). There were many significant main effects on kinematics in the different regions due to the fatigue (0.01 < p <0.05, 0.44 > [Formula: see text] > 0.14). In the fatigue condition, there was a polynomial relationship between velocity of shoulder and hip joints (R2flex = 0.82, R2ext = 0.72) rather than linear (R2flex = 0.64, R2ext = 0.53) and coefficient correlations also decreased (rflex = 0.88 to 0.80, rext = 0.92 to 0.73). The sticking region was observed in the non-fatigue condition and disappeared when fatigue occurred. These results suggest that LLMR may be taken into consideration in the squat exercises, joint tracking may vary for velocity-based squat training and pre-test for sticking region observation may be apply with the BSQ.

摘要

本研究旨在通过将深蹲周期分为四个不同区域,详细分析疲劳对体重深蹲运动(BSQ)运动学参数的影响。21 名男性运动员参与了这项研究。参与者根据其下肢肌肉比例(LLMR)分为两组。通过具有高有效性和可靠性的运动分析软件获得线性和角度运动学。在伸展阶段的膝关节 ROM 和弯曲阶段的髋关节角速度的制动阶段,疲劳条件和 LLMR 组之间没有显著的但具有较大效应量的相互作用(0.08 > p > 0.05,0.18 > [公式:见文本] > 0.16)。疲劳条件对 BSQ 的加速和制动阶段的持续时间没有显著影响(p > 0.05)。由于疲劳,不同区域的运动学有许多显著的主要影响(0.01 < p < 0.05,0.44 > [公式:见文本] > 0.14)。在疲劳条件下,肩部和髋关节的速度之间存在多项式关系(R2flex = 0.82,R2ext = 0.72),而不是线性关系(R2flex = 0.64,R2ext = 0.53),并且系数相关性也降低(rflex = 0.88 到 0.80,rext = 0.92 到 0.73)。在非疲劳条件下观察到黏着区,而在疲劳发生时则消失。这些结果表明,在深蹲运动中可能需要考虑 LLMR,基于速度的深蹲训练可能会改变关节跟踪,并且可能需要在 BSQ 中进行黏着区观察的预测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/028f/10681224/00f9ee741634/pone.0289089.g001.jpg

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