最大有氧能力体力活动对女排运动员血液动力学及红细胞形态生化变化的影响

B. Mytckan, V. Verbovyi, R. Y. Chovhan, N. Zemska, O. F. Kryzanivskaya, S. Bublyk, V. Mocherniuk, R. Faichak, G. O. Pjatnichuk, S. Popel, O. Baskevich
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引用次数: 1

摘要

目的:研究女子排球运动员在最大有氧能力体力活动中机体的心、血流动力学反应类型及外周血红细胞形态生化变化。材料:18名不同年龄段的女子排球运动员参加了实验(年龄-22,0±0.6岁)。研究了最大(3,5W/kg体重)体力活动前后的心、血流动力学(通过功能方法)、功能变化(通过生化方法)和红细胞结构(通过扫描电子显微镜)。结果:确定最大体力活动引起心、血流动力学的本质变化。这种变化取决于外周血红细胞的形态重组(红细胞变形指数的增加),并与生化变化(红细胞中ATP浓度的降低和镁浓度的增加)密切相关。探讨了实现女排运动员机体对最大有氧能力体育活动反应特征的可能机制。结论:女子排球运动员最大有氧能力的体力活动具有机体心脑动力反应的类型特征。这些特征通过外周血红细胞的构象变化来表达。它们取决于这些细胞中单独的大分子元素的浓度和心血液动力学的类型。
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Influence of physical activity of the maximum aerobic power on hemo-dynamic and morpho-biochemical of change of erythrocytes of female volleyball players
Purpose : to study types of the cardio-hemo-dynamic reaction of an organism and morpho-biochemical changes of erythrocytes of peripheral blood of female volleyball players on physical activity of the maximum aerobic power. Material : 18 female volleyball players with different qualification participated in the experiment (age - 22,0±0,6 years). It is investigated cardio-hemo-dynamic (by functional methods), functional changes (by biochemical methods) and structure of erythrocytes (by means of the scanning electronic microscopy) before and after maximum (3,5 W/kg of body mass) physical activity. Results : It is determined that the maximum physical activity causes essential changes in cardio-hemo-dynamic. Such changes depend on the morphological reorganization of peripheral blood erythrocytes (increase in the index of erythrocytes deformation) and closely correlate with biochemical changes (decrease of ATP concentration and increase of magnesium concentration in erythrocytes). It is discussed the possible mechanisms of realization of reaction features of the organism of female volleyball players to physical activity of the maximum aerobic power. Conclusions : the physical activity of the maximum aerobic power finds typological features of the cardio-hemo-dynamic reaction of the female volleyball players’ organism. Such features are expressed by conformational changes of erythrocytes of peripheral blood. They depend on the concentration of separate macroelements in these cells and type of cardio-hemo-dynamic.
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