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Updated: Jun 25, 2026

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
A principal components approach to parent-to-newborn body composition associations in South India
Sargoor R Veena1, Ghattu V Krishnaveni, Andrew K Wills
1Epidemiology Research Unit, Holdsworth Memorial Hospital, Mysore, South India. veenasr@gmail.com
Insights
Maternal nutritional status and parity influence newborn adiposity, while genetics determine newborn length. Principal components analysis effectively describes neonatal body composition and its determinants in an Indian population.
Area of Science:
- Human biology
- Anthropometry
- Genetics
Background:
- Birth size is influenced by maternal nutrition, parity, and genetics.
- Birth weight is a composite measure of bone, fat, and lean mass with potentially different determinants.
- This study investigated maternal and newborn body composition in an Indian population using anthropometry and principal components analysis (PCA).
Purpose of the Study:
- To describe maternal and newborn body composition using PCA.
- To explore associations between maternal and newborn body composition.
- To compare maternal and paternal measurements as predictors of newborn body composition.
Main Methods:
- Anthropometric measurements (weight, height, circumferences, skinfolds, pelvic diameters) were taken from 571 pregnant women and their newborns.
- Paternal height and weight were also recorded.
- Principal components analysis (PCA) was applied to maternal and neonatal measurements.
Main Results:
- PCA identified independent components for maternal (fat, pelvis, height, muscle) and neonatal (trunk+head, fat, leg length) measurements.
- Maternal fat positively correlated with neonatal fat (beta = 0.16 SD).
- Maternal BMI, height, and muscle (in males) predicted neonatal trunk+head; maternal height and paternal height predicted neonatal trunk+head, with paternal height also predicting neonatal leg length.
Conclusions:
- PCA is a valuable tool for analyzing neonatal body composition and its determinants.
- Newborn adiposity is linked to maternal nutrition and parity.
- Newborn length appears to be genetically determined, warranting further research into skeletal growth determinants.
Background:
Size at birth is influenced by environmental factors, like maternal nutrition and parity, and by genes. Birth weight is a composite measure, encompassing bone, fat and lean mass. These may have different determinants. The main purpose of this paper was to use anthropometry and principal components analysis (PCA) to describe maternal and newborn body composition, and associations between them, in an Indian population. We also compared maternal and paternal measurements (body mass index (BMI) and height) as predictors of newborn body composition.
Methods:
Weight, height, head and mid-arm circumferences, skinfold thicknesses and external pelvic diameters were measured at 30 +/- 2 weeks gestation in 571 pregnant women attending the antenatal clinic of the Holdsworth Memorial Hospital, Mysore, India. Paternal height and weight were also measured. At birth, detailed neonatal anthropometry was performed. Unrotated and varimax rotated PCA was applied to the maternal and neonatal measurements.
Results:
Rotated PCA reduced maternal measurements to 4 independent components (fat, pelvis, height and muscle) and neonatal measurements to 3 components (trunk+head, fat, and leg length). An SD increase in maternal fat was associated with a 0.16 SD increase (beta) in neonatal fat (p < 0.001, adjusted for gestation, maternal parity, newborn sex and socio-economic status). Maternal pelvis, height and (for male babies) muscle predicted neonatal trunk+head (beta = 0. 09 SD; p = 0.017, beta = 0.12 SD; p = 0.006 and beta = 0.27 SD; p < 0.001). In the mother-baby and father-baby comparison, maternal BMI predicted neonatal fat (beta = 0.20 SD; p < 0.001) and neonatal trunk+head (beta = 0.15 SD; p = 0.001). Both maternal (beta = 0.12 SD; p = 0.002) and paternal height (beta = 0.09 SD; p = 0.030) predicted neonatal trunk+head but the associations became weak and statistically non-significant in multivariate analysis. Only paternal height predicted neonatal leg length (beta = 0.15 SD; p = 0.003).
Conclusion:
Principal components analysis is a useful method to describe neonatal body composition and its determinants. Newborn adiposity is related to maternal nutritional status and parity, while newborn length is genetically determined. Further research is needed to understand mechanisms linking maternal pelvic size to fetal growth and the determinants and implications of the components (trunk v leg length) of fetal skeletal growth.
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