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对提高运动训练科学性的探讨 被引量:3
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作者 何艳君 《湖北体育科技》 2004年第1期98-100,共3页
提高运动训练的科学性是现代竞技体育发展的需要。通过对运动训练的直接作用力、间接作用力、外在 保护机制和创新精神几个方面,来探讨如何提高运动训练的科学性。
关键词 运动训练 科学性 竞技体育 间接作用力 项群训练理论
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不同运动方式对Ⅱ型糖尿病小鼠骨形成及BMPs/Smad途径相关分子表达的影响 被引量:7
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作者 陈祥和 彭海霞 +3 位作者 李世昌 孙朋 牟其林 杨念恩 《北京体育大学学报》 CSSCI 北大核心 2017年第5期51-58,共8页
目的:探究T2DM小鼠骨形成及BMPs/Smad途径中相关分子表达变化,以及不同力学刺激对T2DM小鼠骨形成及BMPs/Smad途径相关分子表达的影响。方法:40只4周龄雄性C57BL/6小鼠随机分为正常对照组(ZC)和T2DM组。T2DM组小鼠利用高脂膳食和STZ法进... 目的:探究T2DM小鼠骨形成及BMPs/Smad途径中相关分子表达变化,以及不同力学刺激对T2DM小鼠骨形成及BMPs/Smad途径相关分子表达的影响。方法:40只4周龄雄性C57BL/6小鼠随机分为正常对照组(ZC)和T2DM组。T2DM组小鼠利用高脂膳食和STZ法进行T2DM造模,成功后将T2DM小鼠随机分为T2DM对照组(TC)、T2DM游泳组(TS)和T2DM下坡跑组(TD),并利用游泳和下坡跑分别对TS和TD组小鼠进行8周运动干预。结束后,利用ALP染液对其骨形成能力进行检测;利用RT-PCR法检测右侧胫骨中相关因子mRNA表达;利用West-blotting法检测右侧股骨中相关因子蛋白表达。结果:与ZC组相比,TC组小鼠骨湿重(P<0.01)和松质骨数量及形态结构均显著下降,OB与颅骨骨形成能力下降;与TC组相比,TS组松质骨数量和形态结构均增加,OB和颅骨骨形成能力升高;与TS组相比,TD组松质骨数量和形态结构均增加,OB和颅骨骨形成能力显著升高。结论:T2DM小鼠骨形成及BMPs/Smad途径被抑制;下坡跑对T2DM小鼠骨产生的直接作用力通过激活BMPs/Smad途径,促进骨形成,改善骨组织形态结构和骨湿重,且其效果优于游泳产生的间接作用力。 展开更多
关键词 BMPs/Smad途径 直接作用力 间接作用力 Ⅱ型糖尿病 骨形成
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A two-scale contact model for collisions between blocks in CDEM 被引量:5
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作者 LI ShiHai TANG DeHong WANG Jie 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第9期1596-1603,共8页
Contact detection between interacting blocks is of great importance to discontinuity-based numerical methods, such as DDA, DEM, and NMM. A rigorous contact theory is a prerequisite to describing the interactions of mu... Contact detection between interacting blocks is of great importance to discontinuity-based numerical methods, such as DDA, DEM, and NMM. A rigorous contact theory is a prerequisite to describing the interactions of multiple blocks. Currently, the penalty method, in which mathematical springs with high stiffness values are employed, is always used to calculate the contact forces. High stiffness values may cause numerical oscillations and limit the time step. Furthermore, their values are difficult to identify. The intention of this study is to present a two-scale contact model for the calculation of forces between colliding blocks. In this new model, a calculation step taken from the moment of contact will be divided into two time stages: the free motion time stage and the contact time stage. Actually, these two time stages correspond to two real physical processes. Based on this, we present a new numerical model that is intended to be more precise and useful in calculating the contact forces without mathematical springs. The propagation of the elastic wave during collision is of a characteristic length, which determines the volume of material involved in the contact force calculation. In conventional contact models, this range is always regarded as the length of one element, which may lead to an inaccurate calculation of contact forces. In fact, the real scale of this range is smaller than the length of a single element, and subdivided elements, which are refined according to the characteristic length and are presented in the new contact model. 展开更多
关键词 TWO-SCALE contact model COLLISION elastic wave element subdivision
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