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Published on: August 17, 2017
Physical activity and femoral neck bone strength during childhood: the Iowa Bone Development Study
Kathleen F Janz1, Julie M Eichenberger Gilmore, Steven M Levy
1Department of Health and Sport Studies, The University of Iowa, Iowa City, Iowa, USA. kathleen-janz@uiowa.edu
Insights
Everyday physical activity in children is linked to stronger hip bone geometry. More moderate to vigorous physical activity (MVPA) correlates with greater bone strength indices, crucial for pre-adolescent bone development.
Area of Science:
- Pediatric bone health
- Skeletal adaptations to mechanical loading
- Childhood physical activity and bone development
Background:
- Bone structural adaptations to mechanical loads are known in adolescence but less understood in younger children.
- Longitudinal data on physical activity and bone geometry in early childhood is limited.
- Hip geometry is a key indicator of bone strength and fracture risk.
Purpose of the Study:
- To investigate the association between everyday physical activity and hip geometry in healthy children aged 4 to 12 years.
- To determine if moderate and vigorous physical activity (MVPA) predicts bone strength indices (cross-sectional area and section modulus) in children.
- To explore the mediating role of body weight and lean mass in the relationship between physical activity and hip geometry.
Main Methods:
- Longitudinal observational study over 6 years with 468 healthy children (age 4-12).
- Hip geometry (femoral neck cross-sectional area [CSA] and section modulus [Z]) assessed via DXA scans and hip structure analysis (HSA).
- Moderate and vigorous physical activity (MVPA) measured using accelerometry.
Main Results:
- MVPA was a significant positive predictor of both CSA and Z in boys and girls (p<0.05).
- Children with 40 min/day MVPA showed 3-5% greater CSA and Z compared to those with 10 min/day.
- Lean mass partially mediated the physical activity-bone geometry relationship in girls and to a lesser extent in boys.
Conclusions:
- Everyday physical activity is associated with enhanced femoral neck bone strength indices during childhood.
- Physical activity is a crucial factor for bone strength development prior to adolescence.
- Increasing physical activity in childhood likely promotes optimal bone strength development.
Abstract:
Structural adaptations of bone to changing mechanical loads have recently been documented during adolescence. However, little is known about how bone adapts structurally during the earlier years. Using a longitudinal observational design spanning 6 years of growth (age range 4 to 12 years), we investigated associations between everyday physical activity and hip geometry in a cohort of healthy Midwestern children (n=468). Femoral neck (FN) cross sectional area (CSA, cm(2)) and FN section modulus (Z, cm(3)) were used to describe hip geometry. CSA and Z, indices of axial and bending strength, were assessed using dual-energy X-ray absorptiometry (DXA) scans and the hip structure analysis (HSA) program. Moderate and vigorous physical activity (MVPA) was assessed using accelerometry-based activity monitors and calculated as the number of minutes > or =3000 accelerometry movement counts. Data were analyzed using multilevel (random- and fixed-effects) regression models with adjustment for age (year), height (cm), and weight (kg) or lean mass (kg). For boys and girls, MVPA was a positive independent predictor of CSA and Z (p<0.05). On average, children who participated in 40 min of MVPA per day would be expected to have 3% to 5% greater CSA and Z than peers participating in 10 min of MVPA per day. Ten-minute increases in daily MVPA had similar effects on CSA in girls and Z in boys as did each additional 1 kg of body weight. When lean mass was substituted for weight, MVPA continued to be a positive independent predictor of CSA and Z for boys, but not girls. This study demonstrates that everyday amounts of physical activity in children are associated with indices of FN bone strength during childhood. Differences in lean mass mediate associations between physical activity and hip geometry in girls, but only somewhat in boys. These results suggest that physical activity is an important contributor to bone strength prior to adolescence and that increasing levels of physical activity during childhood are likely to enhance optimal bone strength.
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