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不同程度的踝关节背屈受限对急停跳跃下肢生物力学的影响

The Effect of Different Degrees of Ankle Dorsiflexion Restriction on the Biomechanics of the Lower Extremity in Stop-Jumping.

作者信息

Zhang Zanni, Xu Datao, Gao Xiangli, Liang Minjun, Baker Julien S, Gu Yaodong

机构信息

Faculty of Sport Science Ningbo University, Ningbo, China.

Faculty of Engineering University of Pannonia, Veszprem, Hungary.

出版信息

Appl Bionics Biomech. 2024 Aug 28;2024:9079982. doi: 10.1155/2024/9079982. eCollection 2024.

Abstract

PURPOSE

The functional status of the ankle joint is critical during dynamic movements in high-intensity sports like basketball and volleyball, particularly when performing actions such as stopping jumps. Limited ankle dorsiflexion is associated with increased injury risk and biomechanical changes during stop-jump tasks. Therefore, this study aims to investigate how restricting ankle dorsiflexion affects lower extremity biomechanics during the stop-jump phase, with a focus on the adaptive changes that occur in response to this restriction. Initially, 18 participants during stop-jumping with no wedge plate (NW), 10° wedge plate (10 W), and 20° wedge plate (20 W) using dominant leg data were collected to explore the relationship between limiting ankle mobility and lower extremity biomechanics. Following this, a musculoskeletal model was developed to simulate and calculate biomechanical data. Finally, one-dimensional parametric statistical mapping (SPM1D) was utilized to evaluate between-group variation in outcome variables using a one-way repeated measures analysis of variance (ANOVA).

RESULTS

As the ankle restriction angle increased, knee external rotation angles, knee extension angular velocities, hip extension angle, and angular velocity increased and were significantly different at different ankle restriction angles (  < 0.001 and =0.001), coactivation of the peripatellar muscles (BF/RF and BF/VM) increased progressively, and patellofemoral joint contact force (PTF) increased progressively during the 3%-8% phase (=0.015). These results highlight the influence of ankle joint restriction on lower limb kinematics and patellofemoral joint loading during the stop-jump maneuver.

CONCLUSION

As the angle of ankle restriction increased, there was an increase in coactivation of the peripatellar muscles and an increase in PTF, possibly because a person is unable to adequately adjust their body for balance when the ankle valgus angle is restricted. The increased coactivation of the peripatellar muscles and increased patellofemoral contact force may be a compensatory response to the body's adaptation to balance adjustments.

摘要

目的

在篮球和排球等高强度运动的动态动作中,踝关节的功能状态至关重要,尤其是在进行诸如急停跳等动作时。踝关节背屈受限与急停跳任务期间受伤风险增加和生物力学变化有关。因此,本研究旨在探讨限制踝关节背屈如何影响急停跳阶段的下肢生物力学,重点关注因这种限制而发生的适应性变化。最初,收集了18名参与者在使用优势腿进行无楔形板(NW)、10°楔形板(10W)和20°楔形板(20W)急停跳时的数据,以探讨限制踝关节活动度与下肢生物力学之间的关系。在此之后,开发了一个肌肉骨骼模型来模拟和计算生物力学数据。最后,利用一维参数统计映射(SPM1D),通过单向重复测量方差分析(ANOVA)来评估结果变量的组间差异。

结果

随着踝关节限制角度的增加,膝关节外旋角度、膝关节伸展角速度、髋关节伸展角度和角速度增加,且在不同踝关节限制角度下存在显著差异(<0.001和=0.001),髌周肌肉(BF/RF和BF/VM)的共同激活逐渐增加,并且在3%-8%阶段髌股关节接触力(PTF)逐渐增加(=0.015)。这些结果突出了踝关节限制对急停跳动作期间下肢运动学和髌股关节负荷的影响。

结论

随着踝关节限制角度的增加,髌周肌肉的共同激活增加以及PTF增加,可能是因为当踝关节外翻角度受到限制时,人无法充分调整身体以保持平衡。髌周肌肉共同激活的增加和髌股接触力的增加可能是身体为适应平衡调整而产生的一种代偿反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1192/11374426/7ee54a006169/ABB2024-9079982.001.jpg

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