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运动及身体素质改善对基础代谢率的影响。

The effect of exercise and improved physical fitness on basal metabolic rate.

作者信息

Bingham S A, Goldberg G R, Coward W A, Prentice A M, Cummings J H

机构信息

MRC Dunn Clinical Nutrition Centre, Cambridge.

出版信息

Br J Nutr. 1989 Mar;61(2):155-73. doi: 10.1079/bjn19890106.

DOI:10.1079/bjn19890106
PMID:2706222
Abstract
  1. The suggestion that there is a sustained enhancement in metabolic rate after exercise was investigated during the course of a study in which six normal-weight volunteers (three men, three women) took part in a 9-week training programme. Baseline values were assessed in a 3-5 week control period of minimal activity before training. At the end of the study the subjects were capable of running for 1 h/d, 5 d/week. 2. Throughout the entire study the subjects were maintained on a constant diet. Measurement of energy expenditure by the doubly-labelled water (2H2(18)O) method showed that the subjects had an energy imbalance of +3% in the control and -20% at the end of the training period. The subjects were in positive (1.1 (SE 0.2) g) nitrogen balance in the second week of the control, and in negative (-0.6 (SE 0.3) g) N balance in the last week of the exercise period. 3. Over the course of the study maximum oxygen consumption (VO2max) and high-density-lipoprotein-cholesterol levels increased by 30%. Heart rate at rest and when performing a standard step test fell significantly. 4. Body composition was assessed weekly by 40K counting and skinfold thickness measurements, in addition to 2H2 dilution at the beginning and end of the study. Fat-free mass was apparently gained in the early phases of the study, but there was lack of agreement between the different methods of assessing body composition. Changes in body-weight were not significant. 5. Basal metabolic rate (BMR), overnight metabolic rate (OMR) and sleeping metabolic rate (SMR) were measured on three occasions: in the control period, and the beginning and end of the training periods. Average BMR in the control period was 5.91 (SE 0.39) MJ/24 h and was not changed with activity. There were no changes in OMR (5.71 (SE 0.27) MJ/24 h in the control) nor in SMR (5.18 (SE 0.27) MJ/24 h in the control), nor in BMR, OMR or SMR when expressed per kg body-weight, or per kg fat-free mass. 6. These results do not support the suggestions that there is a sustained increase in BMR following exercise that can usefully assist in weight-loss programmes.
摘要
  1. 在一项研究过程中,对运动后代谢率是否会持续提高这一观点进行了调查。该研究中有六名体重正常的志愿者(三名男性、三名女性)参加了为期9周的训练计划。在训练前,通过3至5周的低活动量对照期评估基线值。研究结束时,受试者能够每天跑步1小时,每周跑5天。2. 在整个研究过程中,受试者保持恒定饮食。采用双标水(2H2(18)O)法测量能量消耗,结果显示,受试者在对照期能量平衡为正3%,在训练期结束时为负20%。受试者在对照期第二周氮平衡为正(1.1(标准误0.2)克),在运动期最后一周氮平衡为负(-0.6(标准误0.3)克)。3. 在研究过程中,最大耗氧量(VO2max)和高密度脂蛋白胆固醇水平提高了30%。静息心率以及进行标准阶梯试验时的心率显著下降。4. 除了在研究开始和结束时通过2H2稀释法评估身体成分外,每周还通过40K计数和皮褶厚度测量来评估身体成分。在研究早期阶段,无脂体重明显增加,但不同身体成分评估方法之间缺乏一致性。体重变化不显著。5. 在三个时间段测量基础代谢率(BMR)、夜间代谢率(OMR)和睡眠代谢率(SMR):对照期、训练期开始时和训练期结束时。对照期平均BMR为5.91(标准误0.39)兆焦/24小时,且不随活动而改变。OMR(对照期为5.71(标准误0.27)兆焦/24小时)、SMR(对照期为5.18(标准误0.27)兆焦/24小时)均无变化,以每千克体重或每千克无脂体重表示时,BMR、OMR或SMR也无变化。6. 这些结果并不支持运动后BMR会持续增加并有助于减肥计划的观点。

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