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采用体内中子活化分析法评估健康受试者身体成分的五室模型。

A five-compartment model of body composition of healthy subjects assessed using in vivo neutron activation analysis.

作者信息

Ryde S J, Birks J L, Morgan W D, Evans C J, Dutton J

机构信息

Department of Medical Physics and Clinical Engineering, Singleton Hospital, Swansea, UK.

出版信息

Eur J Clin Nutr. 1993 Dec;47(12):863-74.

PMID:8156983
Abstract

A body composition study of 31 healthy subjects covering a wide range of age (23.5-72.0 years) and weight (44.5-104.2 kg) has been undertaken. Subjects were assessed by in vivo neutron activation and tritiated water analysis and values of total body nitrogen, hydrogen and fat obtained by utilization of a five-compartment model of body composition comprising protein, water, fat, minerals and glycogen. The protein (as 6.25 x nitrogen) and water compartments were measured but the smaller compartments of minerals and glycogen were calculated as fixed fractions of the fat-free mass estimated from the water space. Fat was calculated as the body mass less the sum of the four other compartments. Mean values (+/- SEM), expressed as a percentage of body mass, for nitrogen, hydrogen and fat were 2.56 (+/- 0.07)%, 10.07 (+/- 0.04)%, and 21.9 (+/- 1.7)% respectively for men and 2.14 (+/- 0.07)%, 10.40 (+/- 0.04)%, and 35.5 (+/- 1.7)% respectively for women. The accuracy of the nitrogen measurements was evaluated by comparison with calculated values from two prediction equations; correlation coefficients, the mean bias (estimated from the mean differences between the measured and predicted nitrogen), the confidence interval for the bias, and limits of agreement were calculated. The correlation coefficients were high (r > 0.93) and the mean bias indicative of agreement. The ratio of nitrogen to the fat-free mass (derived from the body composition model) was also calculated and mean values (+/- SEM) of 32.7 (+/- 0.4) and 33.1 (+/- 0.4) g/kg for men and women, respectively were obtained. The hydration of the fat-free mass was determined to be 0.725 (+/- 0.002) and 0.722 (+/- 0.002) kg/kg for men and women respectively. The accuracy of the body fat estimate was evaluated by comparison with skinfold-thickness-derived values and computation from tritiated water space. The ratio of the body composition model to skinfold-thickness-derived fat was significantly (P < 0.005) greater than unity. The mean bias between the body composition model and tritiated-water-derived fat was -0.6 percentage points of fat (95% confidence interval from -0.3 to -0.9 percentage points of fat). Finally a prediction equation (r2 = 0.908, SEE = 108 g) for body nitrogen in healthy subjects based on weight, age and sex was calculated.

摘要

对31名健康受试者进行了身体成分研究,这些受试者年龄范围广泛(23.5 - 72.0岁),体重范围为(44.5 - 104.2千克)。通过体内中子活化和氚水分析对受试者进行评估,并利用包含蛋白质、水、脂肪、矿物质和糖原的五成分身体成分模型得出全身氮、氢和脂肪的值。测量了蛋白质(以6.25×氮表示)和水成分,但矿物质和糖原这两个较小的成分是根据从水空间估计的去脂体重的固定比例计算得出的。脂肪通过体重减去其他四个成分的总和来计算。以体重百分比表示的氮、氢和脂肪的平均值(±标准误),男性分别为2.56(±0.07)%、10.07(±0.04)%和21.9(±1.7)%,女性分别为2.14(±0.07)%、10.40(±0.04)%和35.5(±1.7)%。通过与两个预测方程的计算值进行比较来评估氮测量的准确性;计算了相关系数、平均偏差(根据测量值和预测氮之间的平均差异估计)、偏差的置信区间和一致性界限。相关系数很高(r > 0.93),平均偏差表明具有一致性。还计算了氮与去脂体重(源自身体成分模型)的比率,男性和女性的平均值(±标准误)分别为32.7(±0.4)和33.1(±0.4)克/千克。确定男性和女性去脂体重的水合作用分别为0.725(±0.002)和0.722(±0.002)千克/千克。通过与皮褶厚度得出的值以及根据氚水空间计算的值进行比较来评估身体脂肪估计的准确性。身体成分模型与皮褶厚度得出的脂肪的比率显著(P < 0.005)大于1。身体成分模型与氚水得出的脂肪之间的平均偏差为脂肪的 - 0.6个百分点(95%置信区间为脂肪的 - 0.3至 - 0.9个百分点)。最后,计算了基于体重、年龄和性别的健康受试者身体氮的预测方程(r2 = 0.908,标准误 = 108克)。

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