Pedagogičeskie osobennosti postroeniâ učebnyh makrociklov silovoj napravlennosti on trenažere «Soncept–2» in sportsmenov edinoborcev

Oleksandr Chumachenko, Oleksandr Kozubenko, Volodymyr Pilnenkij
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Abstract

In this preparation of the sportsmen of êdinoborcìv has been included in the training process of exercises on Simulator «Concept–2». This dependence is related to the fact that the athletes êdinoborcâm need to perform common power exercises on simulators to increase training volume of corresponding capacity. Sources of literature do not disclose data integrated power preparation êdinoborcìv using vesluvalnih simulators, so study the allowable amounts of load simulator «Concept–2» is the unsolved problem of the modern physical culture and Sport. Sports training is a system that is constantly being improved based on the accumulation of new data, experimental research, best practices and scientific and technical progress. For testing and training athletes êdinoborcìv, as well as to increase the level of physical disability of different population groups are widely used vesluvalnì ergometers «Concept–2», etc. An auxiliary factor for improving the general preparedness of athletes of single-fighters is the development of highly specialized manifestations of force, which determine the capabilities of the development of the necessary effort and its abilities in the process of training and competitive activities. A key element in the formation of specialized power qualities of wrestlers is the effective transfer of this motor quality in the transition from the preferential use of the PROF. In this regard, the formation of a methodical approach, based on which is the improvement of special power capabilities, as an integrated component of the system of functional training of single-team fighters, becomes actual. Analysis of special literature and practice of strength training in martial arts gave reason to speak about the possibility of solving this problem using special training devices that stimulate the development of power abilities, provided that the main groups of muscles are included and the main elements of the structure of the competitive exercise are preserved. In this case, the interest is an analysis of the method of using a specialized power simulator «Dyno-Concept». It is recommended to use a rowing simulator to assess the strength of athletes of single-team with the exercise of traction sitting for the upper limbs and foot press for the lower extremities in three modes: I (damper simulator fully open) – manifestation of power capabilities at high speed; II-th – (open half of the flaps) – the manifestation of the optimal ratio of the speed and power component at medium speed; III (damper of the simulator is completely closed) – manifestation of maximum force at low speed. In the second mode, half of the flaps were opened. To evaluate special strength endurance – maximum test 2000 m. Application of the methodology of the development of force using the specialized simulator «Сoncept–2 Dyno» allows you to get a higher rate of growth of the developing quality. In the experimental group, the strength of the hands was 5%, leg strength – 2,8%, strength endurance increased by 2,2%; in the control group, respectively, 1.4%, 1.2% and 1%.
在这项准备工作中,êdinoborcìv的运动员已列入模拟器«概念- 2»练习的训练过程中。这种依赖性与运动员êdinoborcâm需要在模拟器上进行常见的力量练习来增加相应能力的训练量有关。文献资料来源未披露数据集成电源准备êdinoborcìv使用vesluvalnih模拟器,因此研究负载模拟器«Concept-2»的允许量是现代体育运动尚未解决的问题。运动训练是一个基于新数据积累、实验研究、最佳实践和科技进步而不断完善的系统。为了测试和训练运动员êdinoborcìv,以及提高不同人群的身体残疾水平,广泛使用vesluvalnì测力器“概念- 2”等。提高单打运动员的一般准备的辅助因素是发展高度专业化的力量表现,这决定了在训练和竞技活动过程中发展必要的努力和能力的能力。形成摔跤运动员专业力量素质的一个关键因素是在优先使用教授的过渡中有效地转移这种马达素质。在这方面,形成一种有系统的方法,以提高特殊力量能力为基础,作为单个团队拳击手功能训练系统的一个组成部分,成为现实。通过对特殊文献和武术力量训练实践的分析,我们有理由认为,在保留竞技运动主要肌肉群和主要结构元素的前提下,使用刺激力量能力发展的特殊训练装置来解决这一问题是可能的。在这种情况下,感兴趣的是分析使用专用电源模拟器«Dyno-Concept»的方法。建议使用赛艇模拟器评估单队运动员的力量,采用上肢牵引坐位、下肢足压练习,分三种模式:I(阻尼器模拟器全开)——高速动力能力的表现;II-th -(打开一半襟翼)-中速时速度与功率分量的最佳比例的表现;III(模拟器的阻尼器完全关闭)-低速时最大力的表现。在第二种模式下,一半的襟翼被打开。评估特殊强度耐久性-最大试验2000米。使用专用模拟器«Сoncept-2 Dyno»开发力的方法的应用使您可以获得更高的开发质量增长率。实验组手部力量- 5%,腿部力量- 2.8%,力量耐力提高2.2%;在对照组中,分别为1.4%,1.2%和1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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