Literature DB >> 26856420

Estimation of fat-free mass in Asian neonates using bioelectrical impedance analysis.

Mya-Thway Tint1, Leigh C Ward2, Shu E Soh3, Izzuddin M Aris3, Amutha Chinnadurai4, Seang Mei Saw5, Peter D Gluckman3, Keith M Godfrey6, Yap-Seng Chong1, Michael S Kramer7, Fabian Yap8, Barbara Lingwood9, Yung Seng Lee10.   

Abstract

The aims of this study were to develop and validate a prediction equation of fat-free mass (FFM) based on bioelectrical impedance analysis (BIA) and anthropometry using air-displacement plethysmography (ADP) as a reference in Asian neonates and to test the applicability of the prediction equations in an independent Western cohort. A total of 173 neonates at birth and 140 at two weeks of age were included. Multiple linear regression analysis was performed to develop the prediction equations in a two-third randomly selected subset and validated on the remaining one-third subset at each time point and in an independent Queensland cohort. FFM measured by ADP was the dependent variable, and anthropometric measures, sex and impedance quotient (L2/R50) were independent variables in the model. Accuracy of prediction equations was assessed using intra-class correlation and Bland-Altman analyses. L2/R50 was the significant predictor of FFM at week two but not at birth. Compared with the model using weight, sex and length, including L2/R50 slightly improved the prediction with a bias of 0·01 kg with 2 sd limits of agreement (LOA) (0·18, -0·20). Prediction explained 88·9 % of variation but not beyond that of anthropometry. Applying these equations to the Queensland cohort provided similar performance at the appropriate age. However, when the Queensland equations were applied to our cohort, the bias increased slightly but with similar LOA. BIA appears to have limited use in predicting FFM in the first few weeks of life compared with simple anthropometry in Asian populations. There is a need for population- and age-appropriate FFM prediction equations.

Entities:  

Keywords:  ADP air-displacement plethysmography; Air-displacement plethysmography; Asian neonates; BIA bioelectrical impedance analysis; Bioelectrical impedance analysis; FFA fat-free mass; FM fat mass; GUSTO Growing Up in Singapore Towards Healthy Outcomes; L length; LOA limits of agreement; S sex; TBW total body water; Validation; W weight

Mesh:

Year:  2016        PMID: 26856420      PMCID: PMC4820031          DOI: 10.1017/S0007114515005486

Source DB:  PubMed          Journal:  Br J Nutr        ISSN: 0007-1145            Impact factor:   3.718


  47 in total

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2.  Adiposity and hyperinsulinemia in Indians are present at birth.

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Authors:  Ursula G Kyle; Ingvar Bosaeus; Antonio D De Lorenzo; Paul Deurenberg; Marinos Elia; José Manuel Gómez; Berit Lilienthal Heitmann; Luisa Kent-Smith; Jean-Claude Melchior; Matthias Pirlich; Hermann Scharfetter; Annemie M W J Schols; Claude Pichard
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4.  Body composition in children: proposal for a method for calculating body fat percentage from total body density or skinfold-thickness measurements.

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5.  Lean body mass estimation by bioelectrical impedance analysis: a four-site cross-validation study.

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Journal:  Am J Clin Nutr       Date:  1988-01       Impact factor: 7.045

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Journal:  Am J Clin Nutr       Date:  1982-05       Impact factor: 7.045

7.  Validation of a new pediatric air-displacement plethysmograph for assessing body composition in infants.

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8.  Estimation of body fatness from body mass index and bioelectrical impedance: comparison of New Zealand European, Maori and Pacific Island children.

Authors:  E C Rush; K Puniani; M E Valencia; P S W Davies; L D Plank
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9.  Weight loss and body temperature changes in breast-fed and bottle-fed neonates.

Authors:  R O Podratz; D D Broughton; D H Gustafson; E J Bergstralh; L J Melton
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10.  A review of body composition studies with emphasis on total body water and fat.

Authors:  H P Sheng; R A Huggins
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3.  Bioelectrical Impedance Analysis-An Easy Tool for Quantifying Body Composition in Infancy?

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4.  Neonatal body composition by air displacement plethysmography in healthy term singletons: a systematic review.

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