首页> 外文期刊>The American Journal of Clinical Nutrition: Official Journal of the American Society for Clinical Nutrition >Evaluation of a new pediatric air-displacement plethysmograph for body-composition assessment by means of chemical analysis of bovine tissue phantoms.
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Evaluation of a new pediatric air-displacement plethysmograph for body-composition assessment by means of chemical analysis of bovine tissue phantoms.

机译:通过对牛组织体模进行化学分析,评估一种用于人体成分评估的新型小儿空气体积描记器。

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摘要

BACKGROUND: Body-composition assessment reflects infant growth and nutritional status but is limited by practical considerations, accuracy, and safety. OBJECTIVE: This study evaluated the precision and accuracy of a new air-displacement plethysmography (ADP) system for pediatric body-composition assessment. DESIGN: We used 24 phantoms constructed from bovine lean muscle and fat. The phantoms varied in mass (1.3894-9.9516 kg) and percentage fat (%Fat; 2.08-34.40%), thereby representing infants between birth and 6 mo of age. Estimates of %Fat obtained with chemical analysis (CA), hydrostatic weighing, and ADP were compared. RESULTS: There was no significant difference between %Fat measured with ADP (%Fat(ADP)) and %Fat measured with CA (%Fat(CA)); the mean values were 18.55% and 18.59%, respectively. SDs for %Fat(ADP) and %Fat(CA) were not significantly different (0.70% and 0.73%, respectively). %Fat measurements obtained with ADP, CA, and hydrostatic weighing were highly correlated (r > 0.99, P < 0.0001). The regression equation (%Fat(CA) = 0.996%Fat(ADP) + 0.119; SEE = 0.600; adjusted R(2) = 0.997; P < 0.0001) did not differ significantly from the line of identity (%Fat(CA) = %Fat(ADP)). There was high agreement between individual measurements of %Fat(ADP) and %Fat(CA), as shown by the narrow 95% limits of agreements between methods (-1.22% to 1.13%), and there was no systematic bias in individual differences across the phantom mass and %Fat ranges. CONCLUSION: ADP provides a highly precise and accurate estimate of %Fat in bovine tissue phantoms in the pediatric ranges of body weight and body fatness.
机译:背景:身体成分评估反映了婴儿的成长和营养状况,但受到实际考虑,准确性和安全性的限制。目的:本研究评估了一种用于小儿身体成分评估的新型空气置换体积描记术(ADP)系统的准确性和准确性。设计:我们使用了24个由牛瘦肉和脂肪构成的模型。幻影的质量(1.3894-9.9516千克)和脂肪百分比(%脂肪; 2.08-34.40%)各不相同,从而代表了出生至6个月大的婴儿。比较了通过化学分析(CA),静水称量和ADP获得的%脂肪的估计值。结果:ADP测得的%Fat(%Fat(ADP))与CA测得的%Fat(%Fat(CA))之间无显着差异。平均值分别为18.55%和18.59%。 %Fat(ADP)和%Fat(CA)的SD差异不显着(分别为0.70%和0.73%)。用ADP,CA和静水称量得出的脂肪含量测量值高度相关(r> 0.99,P <0.0001)。回归方程(%Fat(CA)= 0.996%Fat(ADP)+ 0.119; SEE = 0.600;调整后的R(2)= 0.997; P <0.0001)与同一性线(%Fat(CA) =%Fat(ADP))。方法之间狭窄的95%协议限制(-1.22%至1.13%)表明,%Fat(ADP)和%Fat(CA)的单独测量之间具有很高的一致性,并且在个体差异方面没有系统的偏差跨越幻像质量和%脂肪范围。结论:ADP提供了在儿科体重和体脂范围内的牛组织体模中%Fat的高精度和准确估算。

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