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训练的生理后果

Physiologic consequences of training.

作者信息

Charlton G A, Crawford M H

机构信息

Department of Medicine, University of New Mexico Health Sciences Center, Albuquerque, USA.

出版信息

Cardiol Clin. 1997 Aug;15(3):345-54. doi: 10.1016/s0733-8651(05)70344-1.

Abstract

Systematic exercise training results in changes in skeletal muscle that increase oxidative capacity and vascular conductance, which lead to an increase in maximal A-VO2. Also, maximal cardiac output is increased, largely because of an increase in maximal stroke volume. Heart rate is decreased at rest and during submaximal exercise because of increased parasympathetic tone and the effect of increased stroke volume on reflex sympathetic tone. The increases in maximal A-VO2 and cardiac output result in increased maximal VO2, the hallmark of the dynamically trained individual. Predominant static exercise training results in fewer increases in maximal VO2 and more local muscle strength enhancements. The systematic application of cross-training can increase both cardiovascular and strength parameters, leading to enhanced athletic performance.

摘要

系统的运动训练会导致骨骼肌发生变化,从而提高氧化能力和血管传导性,进而使最大动静脉氧差增加。此外,最大心输出量增加,这主要是由于最大每搏输出量增加所致。由于副交感神经张力增加以及每搏输出量增加对反射性交感神经张力的影响,静息时和次最大运动时心率会降低。最大动静脉氧差和心输出量的增加导致最大摄氧量增加,这是动态训练个体的标志。主要进行静力性运动训练时,最大摄氧量的增加较少,而局部肌肉力量增强较多。交叉训练的系统应用可以同时提高心血管和力量参数,从而提升运动表现。

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