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健康女性无脂肪体重的水合作用,特别提及妊娠的影响。

Hydration of fat-free mass in healthy women with special reference to the effect of pregnancy.

作者信息

Lof Marie, Forsum Elisabet

机构信息

Division of Nutrition, Department of Biomedicine and Surgery, University of Linkoping, Linkoping, Sweden.

出版信息

Am J Clin Nutr. 2004 Oct;80(4):960-5. doi: 10.1093/ajcn/80.4.960.

Abstract

BACKGROUND

Knowledge of the biological variability of the hydration factor (HF), ie, the ratio between total body water and fat-free mass, is important when calculating total body fat by means of the commonly used two-component model, which is based on estimates of body weight and total body water. The effect of pregnancy on the biological variability of HF, and consequently on the precision of the two-component model, is unknown.

OBJECTIVE

Our goal was to assess the effect of pregnancy on HF and its biological variability.

DESIGN

HF was assessed in 33 women planning pregnancy and in 17 of these women during gestational weeks 14 and 32 and 2 wk postpartum. HF was calculated by using estimates of body weight, total body water obtained by means of deuterium dilution, and body volume measured by using underwater weighing.

RESULTS

In the 17 women who became pregnant, HF was 0.718 +/- 0.023, 0.723 +/- 0.031, 0.747 +/- 0.017, and 0.734 +/- 0.020 before pregnancy, in gestational week 14, in gestational week 32, and 2 wk postpartum, respectively. The biological variability represented approximately 2% of average HF in the nonpregnant state. The corresponding figure was >3% in gestational week 14 but </=1.7% in gestational week 32.

CONCLUSION

The two-component model for assessing body fat is as appropriate during late gestation as it is in the nonpregnant state, although its precision may be impaired when applied during the first part of pregnancy.

摘要

背景

在通过常用的双组分模型计算全身脂肪时,了解水合因子(HF)的生物学变异性很重要,该模型基于体重和全身水含量的估计值,其中HF是指全身水与去脂体重的比值。妊娠对HF生物学变异性的影响,进而对双组分模型精度的影响尚不清楚。

目的

我们的目标是评估妊娠对HF及其生物学变异性的影响。

设计

对33名计划怀孕的女性以及其中17名女性在妊娠第14周、32周和产后2周时的HF进行评估。通过体重估计值、用氘稀释法获得的全身水含量以及水下称重法测量的身体体积来计算HF。

结果

在17名怀孕的女性中,妊娠前、妊娠第14周、妊娠第32周和产后2周时的HF分别为0.718±0.023、0.723±0.031、0.747±0.017和0.734±0.020。生物学变异性在非妊娠状态下约占平均HF的2%。在妊娠第14周时相应数字>3%,但在妊娠第32周时≤1.7%。

结论

评估身体脂肪的双组分模型在妊娠晚期与非妊娠状态下一样适用,尽管在妊娠早期应用时其精度可能会受到影响。

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