Rutkowska-Kucharska Alicja, Wysocka Katarzyna, Winiarski Sławomir, Szpala Agnieszka, Sobera Małgorzata
Department of Biomechanics, University School of Physical Education in Wroclaw, Wroclaw, Poland.
Department of Athletics and Gymnastics, University School of Physical Education in Wroclaw, Wroclaw, Poland.
Appl Bionics Biomech. 2017;2017:3954907. doi: 10.1155/2017/3954907. Epub 2017 Feb 27.
The aim of this research was to determine the features of a step workout technique which may be related to motor system overloading in step aerobics. Subjects participating in the research were instructors ( = 15) and students ( = 15) without any prior experience in step aerobics. Kinematic and kinetic data was collected with the use of the BTS SMART system comprised of 6 calibrated video cameras and two Kistler force plates. The subjects' task was to perform basic steps. The following variables were analyzed: vertical, anteroposterior, and mediolateral ground reaction forces; foot flexion and abduction and adduction angles; knee joint flexion angle; and trunk flexion angle in the sagittal plane. The angle of a foot adduction recorded for the instructors was significantly smaller than that of the students. The knee joint angle while stepping up was significantly higher for the instructors compared to that for the students. Our research confirmed that foot dorsal flexion and adduction performed while stepping up increased load on the ankle joint. Both small and large angles of knee flexion while stepping up and down resulted in knee joint injuries. A small trunk flexion angle in the entire cycle of step workout shut down dorsal muscles, which stopped suppressing the load put on the spine.
本研究的目的是确定一种踏板健身操技术的特点,该特点可能与踏板有氧操中运动系统过载有关。参与研究的受试者为指导员(n = 15)和学生(n = 15),他们之前均无踏板有氧操经验。使用由6个校准摄像机和两个奇石乐测力板组成的BTS SMART系统收集运动学和动力学数据。受试者的任务是完成基本步伐。分析了以下变量:垂直、前后和内外侧地面反作用力;足部屈伸、外展和内收角度;膝关节屈曲角度;以及矢状面内的躯干屈曲角度。记录到的指导员足部内收角度明显小于学生。与学生相比,指导员上踏板时的膝关节角度明显更高。我们的研究证实,上踏板时足部背屈和内收会增加踝关节的负荷。上下踏板时膝关节屈曲角度过小或过大都会导致膝关节损伤。在踏板健身操的整个周期中,躯干屈曲角度过小会使背部肌肉放松,从而无法抑制施加在脊柱上的负荷。