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如何教授跳跃后的安全着地?使用生物反馈来最小化现代舞元素中产生的冲击力量。

How to teach safe landing after the jump? The use of biofeedback to minimize the shock forces generated in elements of modern dance.

机构信息

Department of Biomechanics, Faculty of Sport Sciences, Poznan University of Physical Education, Poznań, Poland.

Department of Biomechatronics, Faculty of Biomedical Engineering, Silesian University of Technology, Zabrze, Poland.

出版信息

Acta Bioeng Biomech. 2021;23(3):47-59.

Abstract

PURPOSE

The aim of the study was to assess the possible use of biofeedback (information on the course and values of ground reaction forces (GRF) during landing following the performance of a dance evolution) for training minimising impact loads after a jump in modern dance.

METHODS

The tests involved the analysis of a total of 60 expressive elements of modern dance performed by 5 soloists. The tests involved the recording of the vertical component of GRF (GRFz) vector using Kistler platform in the landing phase following the performance of modern dance jumps. The dancers performed the above-named jumps three times in successive tests: a reference test (without biofeedback) and the next two tests with biofeedback, after the obtainment of information about the vertical value of GRF. After each performance, the dancers watched a course of GRF and films showing the recorded landing phase.

RESULTS

Applying of a proposed didactic laboratory session led to: extension of contact time and of time preceding the obtainment of the maximum value of GRFz, reduction of the maximum values of the vertical components of the GRF, reduction of the loading rate of the ground reaction force, increase of an impulse of the vertical component of GRF in the entire stance phase and in the shock absorption phase.

CONCLUSIONS

Proposed didactic laboratory session with biofeedback may result in the change of the post-jump shock absorption technique.

摘要

目的

本研究旨在评估生物反馈(在执行现代舞跳跃后着陆期间有关地面反作用力(GRF)的过程和值的信息)在现代舞中用于训练减少跳跃后冲击负荷的可能性。

方法

该测试共涉及 5 位独舞演员完成的 60 个现代舞的表现力元素的分析。该测试使用 Kistler 平台记录了 GRF 垂直分量(GRFz)矢量,该矢量在现代舞跳跃后的着陆阶段记录。舞者在连续的测试中进行了三次上述跳跃:参考测试(无生物反馈)和接下来的两次测试具有生物反馈,在获得有关 GRF 垂直值的信息后。每次表演后,舞者都会观看 GRF 的过程和显示记录着陆阶段的电影。

结果

应用提出的教学实验室课程导致:接触时间和 GRFz 最大值之前的时间延长,GRF 的垂直分量的最大值减小,地面反作用力的加载率减小,垂直分量的冲量在整个支撑阶段和缓冲阶段增加。

结论

具有生物反馈的提出的教学实验室课程可能会导致跳跃后缓冲技术的改变。

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