pQCT bone geometry and strength: population epidemiology and concordance in Australian children aged 11–12 years and their parents

Author:

Vlok Jennifer,Simm Peter J,Lycett KateORCID,Clifford Susan AORCID,Grobler Anneke CORCID,Lange KatherineORCID,Ismail Najmi,Osborn William,Wake MelissaORCID

Abstract

ObjectivesTo describe the epidemiology and concordance of bone health in a population-based sample of Australian parent-child dyads at child age 11–12 years.DesignPopulation-based cross-sectional study (the Child Health CheckPoint) nested between waves 6 and 7 of the Longitudinal Study of Australian Children (LSAC).SettingAssessment centres in seven cities around Australia, February 2015–March 2016.Participants: of all participating CheckPoint families (n=1874), bone data were available for 1222 dyads (1271 children, 50% girls; 1250 parents, 86% mothers).Outcome measuresPeripheral quantitative CT (pQCT) of the non-dominant leg scanned at the 4% (distal) and 66% (mid-calf) tibial sites. Stratec XCT 2000 software generated estimates of bone density, geometry and polar stress-strain index.Parent-child concordance were assessed using Pearson’s correlation coefficients and multivariable linear regression models. Percentiles were determined using survey weights. Survey weights and methods accounted for LSAC’s complex sampling, stratification and clustering within postcodes.ResultsConcordances were greater for the geometric pQCT parameters (periosteal circumference 0.38, 95% CI 0.33 to 0.43; endosteal circumference 0.42, 95% CI 0.37 to 0.47; total cross-sectional area 0.37, 95% CI 0.32 to 0.42) than density (cortical density 0.25, 95% CI 0.19 to 0.30). Mother-child and father-child values were similar. Relationships attenuated only slightly on adjustment for age, sex and body mass index. Percentiles and concordance are presented for the whole sample and by sex.ConclusionsThere is strong parent-child concordance in bone geometry and, to a lesser extent, density even before the period of peak adolescent bone deposition. This geometrical concordance suggests that future intergenerational bone studies could consider using pQCT rather than the more commonly used dual X-ray absorptiometry (DXA).

Funder

The University of Melbourne

Financial Markets Foundation for Children

Victorian Government’s Operational Infrastructure Support Program

Cure Kids, New Zealand

The Royal Children’s Hospital Foundation

National Health and Medical Research Council

National Heart Foundation of Australia

Murdoch Children’s Research Institute

Publisher

BMJ

Subject

General Medicine

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