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Variability of birth-weight distributions by sex and ethnicity: analysis using mixture models
1Department of Anthropology, College of Arts and Sciences, State University of New York, Albany 12222, USA.
Insights
Infant mortality risk varies by birth weight, with population differences suggesting underlying heterogeneity. Gaussian mixture models reveal distinct subpopulations within birth cohorts, impacting infant mortality rates and explaining ethnic variations.
Area of Science:
- Demography
- Biostatistics
- Public Health
Background:
- Birth weight is a key factor in infant mortality.
- The relationship between birth weight and infant mortality differs across populations, such as between African American and European American infants.
- Existing data suggests birth cohorts may be heterogeneous even after accounting for known variables.
Purpose of the Study:
- To investigate intrapopulation heterogeneity in birth weight distributions using Gaussian mixture models.
- To explore interpopulation variations in the shape of birth weight distributions.
- To examine how heterogeneity within birth weight distributions relates to infant mortality.
Main Methods:
- Application of Gaussian mixture models to analyze birth weight distributions.
- Statistical analysis of sex and ethnic differences in birth weight distributions and heterogeneity.
- Identification of specific components within the birth weight distribution associated with infant mortality.
Main Results:
- Human birth weight distributions are well-described by a two-component mixture model.
- Birth weight distributions and their heterogeneity vary significantly between sexes and ethnic groups.
- One specific subpopulation component is strongly linked to overall infant mortality levels.
Conclusions:
- Birth cohorts likely comprise subpopulations with differing mortality risks.
- Variations in subpopulation composition among ethnic groups may explain interethnic differences in birth weight-specific infant mortality.
- Mixture models offer a valuable tool for understanding determinants of birth weight and infant mortality.
Abstract:
Birth weight is the most important proximate determinant of the level of infant mortality. However, the association between birth weight and infant mortality is not constant among populations. For example, the mortality of African American infants is lower at low birth weight but higher at high birth weight compared with European American infants. One possible explanation is that birth cohorts are heterogeneous even after controlling for birth weight, ethnicity, sex, and multiple births. The analyses presented here use Gaussian mixture models to explore the interpopulation variation in the shape of the birth-weight distribution for evidence of intrapopulation heterogeneity. The results suggest that a two-component mixture model provides an excellent description of human birth-weight distributions. Further statistical analyses of sex and ethnic differences indicate (1) that the birth-weight distributions and heterogeneity within the distribution vary between the sexes and among ethnic groups and (2) that one specific component is more closely associated with the overall level of infant mortality. The results support the hypothesis that birth cohorts can consist of two or more subpopulations at differential risk of mortality. Differences in the subpopulation composition of birth cohorts (i.e., differences in the level of heterogeneity among the various ethnic groups) might partially explain the interethnic variation in birth-weight-specific mortality. Further development of these mixture models should provide important additional information concerning the biological, environmental, and social determinants of birth weight and infant mortality.
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