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古典芭蕾舞者进行猫跳和点地跳时踝关节的力学需求

Mechanical Demands at the Ankle Joint During Saut de Chat and Temps levé Jumps in Classically Trained Ballet Dancers.

作者信息

Perry Sarah K, Buddhadev Harsh H, Brilla Lorraine R, Suprak David N

机构信息

Department of Health and Human Development, Western Washington University, Bellingham, WA, USA.

出版信息

Open Access J Sports Med. 2019 Dec 6;10:191-197. doi: 10.2147/OAJSM.S234289. eCollection 2019.

Abstract

BACKGROUND

During ballet, injuries to the Achilles tendon are associated with the take-off phase of various jumps.

RESEARCH QUESTION

The purpose of the study was to assess differences in mechanical demand on the body, specifically at the ankle, in two single-leg jumps commonly trained in ballet: a saut de chat (SDC) and a temps levé (TL).

METHODS

Fifteen classically trained female dancers had 16 reflective markers placed on the lower body and each dancer performed each jump three times on a force plate. The marker position data and ground reaction forces (GRF) were captured synchronously at 250 Hz and 1000 Hz, respectively. Peak vertical GRF, mean rate of force development (RFD), peak ankle moment, and peak ankle power were determined and averaged across trials. Paired -tests were used to determine differences between the SDC and the TL.

RESULTS

When compared to the TL, the SDC displayed significantly higher peak vertical GRF ( = 0.003), RFD ( = 0.002), and peak ankle moment and power ( < 0.001). The effect sizes for these differences were large for all variables (Cohen's > 0.80).

CONCLUSION

The mechanical demand at the ankle joint is significantly greater for the SDC than the TL.

摘要

背景

在芭蕾舞运动中,跟腱损伤与各种跳跃动作的起跳阶段有关。

研究问题

本研究的目的是评估芭蕾舞中常见的两种单腿跳跃动作,即猫跳(SDC)和原地单腿跳(TL),对身体尤其是踝关节的力学需求差异。

方法

15名接受过古典芭蕾训练的女性舞者在下半身放置了16个反光标记,每位舞者在测力板上各进行三次每种跳跃动作。分别以250Hz和1000Hz同步采集标记位置数据和地面反作用力(GRF)。确定每次试验的垂直GRF峰值、平均力发展速率(RFD)、踝关节力矩峰值和踝关节功率峰值,并求平均值。采用配对t检验确定SDC和TL之间的差异。

结果

与TL相比,SDC的垂直GRF峰值(P = 0.003)、RFD(P = 0.002)以及踝关节力矩和功率峰值显著更高(P < 0.001)。所有变量这些差异的效应量都很大(科恩d值>0.80)。

结论

SDC对踝关节的力学需求显著高于TL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5d8/6902839/34553cb49564/OAJSM-10-191-g0001.jpg

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