影响技术训练数据传感器(Triton Wear)提高青年50米自由泳某些阶段的表现和成绩的生物力学变量

Yousif Sareeh Alfadly, Ahmed Thamer
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摘要

游泳是一项需要巨大肌肉力量和复杂运动表现的运动,需要身体各部分运动之间的协调与和谐,从而达到超越人类极限的表现。身体能力的发展和技术成绩的提高,都离不开科学理论和技术的支持,才能利用现代传感器和信息采集系统,完善基于信息和数据融合的训练方法和反馈系统。为了帮助运动员提高成绩和成就,研究人员为此使用了一种设备(Triton Wear数据传感器)来收集有关运动员成绩的信息和反馈,为50米游泳运动员准备特殊练习和纠正实时表现。本研究以(6)名青少年游泳运动员为样本,在每位游泳运动员的头罩下佩戴传感器,提取其技术和力学数据,并在该系统上对其性能数据进行分析,实验持续6周,在此期间进行特殊训练和反馈。基于每个样本成员的传感器数据的瞬时,并经过后测,表明基于传感器技术的练习和反馈,对样本在50米自由泳比赛中的平均表现和所有生物力学值(如平均速度,频率和长度)的改善有直接影响。这一改进表明,利用传感器的多信息融合,数据采集和营养可以更精确和不同的应用于不同的游泳比赛训练中,可以发现运动游泳运动员的许多运动问题,为他们描述训练解决方案,无论是针对身体的特定部位还是整体身体。因此,准确识别这些有价值信息的技术可用于定量生物力学分析。并达到培训过程。
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Influence Technique Training Data sensor (Triton Wear) To improve biomechanical variables for some stages Performance and achievement 50m freestyle youth
Swimming is one of the sports with great muscular effort and complex motor performance that requires coordination and harmony between the movements of the parts of the body contributing to performance that defies the limits of humans. The development of physical abilities and the improvement of technical performance can only be separated from the support of scientific theories and technology, in order to improve training methods and feedback system based on the fusion of information and data using modern sensors and information collection system. On the performance and mechanical conditions of the swimmer to help develop performance and achievement, the researchers used for this purpose a device (Triton Wear data sensor) to collect information and feedback on performance, to prepare special exercises and correct thereal-time performance of 50 m swimmers. The research was conducted on a sample of swimmers amounting to (6) young swimmers whose technical and mechanical data was extracted after wearing the sensor under the head cover of each swimmer, and the performance data was analyzed on this system, and the experiment lasted for six weeks, during which special exercises and feedback were given. Instantaneous based on the sensor data of each member of the sample, and after conducting post-tests, it was shown that the exercises and feedback based on the sensor technology, had a direct impact on  the improvement of the average performance  of the sample in the  50-meter freestyle   race and the improvement of all biomechanical values (such as average speed, frequency and length, acceleration and instantaneous strength) This improvement indicated that data collection and nutrition  Using the sensor's multi-information  fusion  can be  applied more precisely and differently in the  training of different swimming races, and can find many motor problems in sports swimmers to describe training solutions for them, both for specific parts of the body and the body as a whole. Techniques for accurately identifying this valuable information can therefore be used for quantitative biomechanical analysis. And to reach the training process.
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