Sport Engineering Lab, Department of Industrial Engineering, University Rome Tor Vergata, 00133 Rome, Italy.
Department for Life Quality Studies, University of Bologna, 47037 Rimini, Italy.
Sensors (Basel). 2020 Jan 19;20(2):542. doi: 10.3390/s20020542.
Nowadays, in modern elite sport, the identification of the best training strategies which are useful in obtaining improvements during competitions requires an accurate measure of the physiologic and biomechanical parameters that affect performance. The goal of this pilot study was to investigate the capabilities of the system, a multichannel digital acquisition system specifically tailored for flatwater sprint kayaking application. allows the synchronous measure of all the parameters involved in kayak propulsion, both dynamic (including forces acting on the paddle and footrest) and kinematic (including stroke frequency, displacement, velocity, acceleration, roll, yaw, and pitch of the boat). After a detailed description of the system, we investigate its capability in supporting coaches to evaluate the performance of elite athletes' trough-specific measurements. This approach allows for a better understanding of the paddler's motion and the relevant effects on kayak behavior. The system allows the coach to carry out a wide study of kayak propulsion highlighting, and, at the same time, the occurrences of specific technical flaws in the paddling technique. In order to evaluate the correctness of the measurement results acquired in this pilot study, these results were compared with others which are available in the literature and which were obtained from subjects with similar characteristics.
如今,在现代精英体育中,确定有助于在比赛中提高的最佳训练策略需要准确测量影响表现的生理和生物力学参数。本初步研究的目的是研究 系统的功能,该系统是专门为静水短距离皮划艇应用定制的多通道数字采集系统。 允许同步测量皮划艇推进过程中涉及的所有参数,包括动力(包括作用在桨和脚踏上的力)和运动学参数(包括划频、位移、速度、加速度、滚动、偏航和俯仰)。在详细描述该系统之后,我们研究了它支持教练评估精英运动员特定划桨测量性能的能力。这种方法可以更好地了解划桨者的动作以及对皮艇行为的相关影响。该系统允许教练对皮划艇推进进行广泛的研究,突出并同时指出划桨技术中出现的特定技术缺陷。为了评估本初步研究中获得的测量结果的正确性,将这些结果与文献中可用的、并从具有相似特征的受试者获得的结果进行了比较。