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The role of sampling duration on basal metabolic rate measurement error.

机译:采样持续时间对基础代谢率测量误差的作用。

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摘要

This study estimated the reliability and the measurement error associated with measuring BMR in elderly men and the effect of within-day and day-to-day variance on measurement accuracy. The BMR of each patient was measured following a standardized protocol, with indirect calorimetry. Each patient was tested on two days within a seven-day period.; The subjects of this study were 35 long-term impatient rehabilitation patients from the Veterans Affairs Hospital, Houston Medical Center. A 12-minute data (24, 30-seconds intervals) were analyzed for both VO2 (ml/min) and BMR (kcal/day). A generalizabilfly design with two facets was used to calculated reliability coefficients and standard errors of measurement (SEM). A repeated measure ANOVA found no significant differences between days, among intervals. The mean VO2 for day 1 was 196 ml/min (ñ7.52) and for day 2 was 201.89 ml/min (±8.6). The mean BMR for day 1 was 1376.7 kcal/day (±311.7) and for day 2 was 1415.9 kcal/day (±360.1). The G-study found that about 32% the total variance associated with between subjects variation, 20% was associated with the interaction of subjects by days, and almost half of the variation was associated with the three-way interaction of subjects, days and intervals for both VO2 and BMR analysis.; D-study estimated the reliability and SEM for various sampling intervals. The sharp decrease in SEM for a single day slowed down after few minutes and reached a plateau at about 20-minutes. Increasing the number of intervals from the interval facet did not increase the G-coefficient more than 0.61. The reason is that the largest source of error was due to day-to-day variance. Increasing the number of days that BMR is measured increase the reliability further.; The SEM for various sampling durations and days can be used to recommend an empirically based measurement protocol that optimizes the accuracy of measuring BMR. An appropriate test protocol is for a 20-minute duration on a single day. This would yield a reliability estimate of about 0.60 with a standard error of about 210 kcal/day. If greater accuracy is needed, BMR will need to be measured on two or more days.
机译:这项研究估计了老年男性与测量BMR相关的可靠性和测量误差,以及日内和日常差异对测量准确性的影响。遵循标准化方案,使用间接量热法测量每位患者的BMR。每位患者在7天的时间内进行了2天的检查。这项研究的对象是休斯敦医学中心退伍军人事务医院的35名长期住院康复患者。分析了12分钟的数据(间隔24、30秒)的VO2(毫升/分钟)和BMR(千卡/天)。使用具有两个方面的概化设计来计算可靠性系数和测量的标准误差(SEM)。重复测量方差分析发现间隔之间的天数之间无显着差异。第1天的平均VO2为196 ml / min(±7.52),第2天的平均VO2为201.89 ml / min(±8.6)。第1天的平均BMR为1376.7 kcal /天(±311.7),第2天的平均BMR为1415.9 kcal /天(±360.1)。 G研究发现,大约32%的总方差与受试者之间的变异有关,20%与天数与受试者的相互作用有关,而几乎一半的变异与受试者,天数和间隔的三向相互作用有关用于VO2和BMR分析。 D研究估算了各种采样间隔的可靠性和SEM。几分钟内SEM的急剧下降在几分钟后减慢,并在约20分钟时达到平稳状态。从间隔刻面增加间隔数不会使G系数增加超过0.61。原因是最大的误差源是由于日常差异。测量BMR的天数增加,进一步提高了可靠性。各种采样持续时间和天数的SEM可用于推荐基于经验的测量协议,以优化BMR的测量精度。适当的测试协议应在一天中持续20分钟。这将产生约0.60的可靠性估计,标准误差约为210 kcal / day。如果需要更高的准确性,则需要在两天或更长时间内对BMR进行测量。

著录项

  • 作者单位

    University of Houston.;

  • 授予单位 University of Houston.;
  • 学科 Health Sciences Nutrition.; Health Sciences Rehabilitation and Therapy.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 预防医学、卫生学;康复医学;
  • 关键词

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