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高强度、大阻力运动期间的肌肉代谢。

Muscle metabolism during intense, heavy-resistance exercise.

作者信息

Tesch P A, Colliander E B, Kaiser P

出版信息

Eur J Appl Physiol Occup Physiol. 1986;55(4):362-6. doi: 10.1007/BF00422734.

Abstract

The objective of this study was to examine the muscle metabolic changes occurring during intense and prolonged, heavy-resistance exercise. Muscle biopsies were obtained from the vastus lateralis of 9 strength trained athletes before and 30 s after an exercise regimen comprising 5 sets each of front squats, back squats, leg presses and knee extensions using barbell or variable resistance machines. Each set was executed until muscle failure, which occurred within 6-12 muscle contractions. The exercise: rest ratio was approximately 1:2 and the total performance time was 30 min. Concentrations of adenosine triphosphate (ATP), creatine phosphate (CP), creatine, glycogen, glucose, glucose-6-phosphate (G-6-P), alpha-glycerophosphate (alpha-G-P) and lactate were determined on freeze-dried tissue samples using fluorometric assays. Blood samples were analyzed for lactate and glucose. The exercise produced significant reductions in ATP (p less than 0.01) and CP (p less than 0.001), while alpha-G-P more than doubled (p less than 0.05), glucose increased tenfold (p less than 0.001) and G-6-P fourfold (p less than 0.001). Muscle lactate concentration at cessation of exercise averaged 17.3 mmol X kg-1 w. w. Glycogen concentration decreased (p less than 0.001) from 160 to 118 mmol X kg-1 w. w. It is concluded that high intensity, heavy resistance exercise is associated with a high rate of energy utilization through phosphagen breakdown and activation of glycogenolysis.

摘要

本研究的目的是检测在高强度、长时间、大负荷抗阻运动过程中发生的肌肉代谢变化。从9名力量训练运动员的股外侧肌获取肌肉活检样本,分别在采用杠铃或可变阻力器械进行包括5组前深蹲、后深蹲、腿推举和膝关节伸展的训练方案之前以及训练后30秒时取样。每组训练直至肌肉疲劳,疲劳在6 - 12次肌肉收缩内出现。运动与休息的比例约为1:2,总运动时间为30分钟。使用荧光测定法对冻干组织样本测定三磷酸腺苷(ATP)、磷酸肌酸(CP)、肌酸、糖原、葡萄糖、6 - 磷酸葡萄糖(G - 6 - P)、α - 甘油磷酸(α - G - P)和乳酸的浓度。对血样分析乳酸和葡萄糖。该训练使ATP(p < 0.01)和CP(p < 0.001)显著降低,而α - G - P增加了一倍多(p < 0.05),葡萄糖增加了10倍(p < 0.001),G - 6 - P增加了4倍(p < 0.001)。运动结束时肌肉乳酸浓度平均为17.3 mmol·kg⁻¹湿重。糖原浓度从160 mmol·kg⁻¹湿重降至118 mmol·kg⁻¹湿重(p < 0.001)。得出的结论是,高强度、大负荷抗阻运动与通过磷酸原分解和糖原分解激活的高能量利用率相关。

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