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Updated: Jun 25, 2025

Scanning Skeletal Remains for Bone Mineral Density in Forensic Contexts
Published on: January 29, 2018
Bone health, cardiovascular disease, and imaging outcomes in UK Biobank: a causal analysis
Dorina-Gabriela Condurache1,2, Stefania D'Angelo3, Ahmed M Salih1,4,5
1NIHR Barts Biomedical Research Centre, William Harvey Research Institute, Centre for Advanced Cardiovascular Imaging, Queen Mary University of London, Charterhouse Square, London, EC1M 6BQ, England, United Kingdom.
Insights
Higher heel bone mineral density (eBMD) is linked to reduced cardiovascular disease (CVD) risk and mortality. However, genetic analysis did not confirm a direct causal link between bone density and heart conditions.
Area of Science:
- Cardiovascular Health
- Bone Metabolism
- Epidemiology
Background:
- Cardiovascular diseases (CVDs) represent a significant global health burden.
- Bone mineral density (BMD) has been observed to correlate with cardiovascular health.
- Understanding the relationship between BMD and CVD is crucial for public health.
Purpose of the Study:
- To investigate the association between estimated heel bone mineral density (eBMD) and prevalent/incident CVDs.
- To examine the relationship between eBMD and all-cause, CVD, and ischemic heart disease (IHD) mortality.
- To assess the link between eBMD and cardiovascular magnetic resonance (CMR) measures.
Main Methods:
- Utilized UK Biobank data from 485,257 participants.
- Employed quantitative ultrasound for eBMD estimation.
- Conducted prospective follow-up and Mendelian randomization (MR) analyses.
Main Results:
- Higher eBMD correlated with lower odds of prevalent CVDs, particularly heart failure (HF) and non-ischemic cardiomyopathy (NICM).
- Higher eBMD was associated with reduced all-cause, CVD, and IHD mortality.
- Observational data showed higher eBMD linked to greater aortic distensibility, but MR analysis did not support causality.
Conclusions:
- Higher heel eBMD is associated with a reduced risk of prevalent and incident CVD and mortality.
- The findings suggest shared risk factors rather than direct causal pathways between bone and cardiovascular health.
- Further research is needed to elucidate the complex interplay between bone density and cardiovascular outcomes.
Abstract:
This study examined the association of estimated heel bone mineral density (eBMD, derived from quantitative ultrasound) with: (1) prevalent and incident cardiovascular diseases (CVDs: ischemic heart disease (IHD), myocardial infarction (MI), heart failure (HF), non-ischemic cardiomyopathy (NICM), arrhythmia), (2) mortality (all-cause, CVD, IHD), and (3) cardiovascular magnetic resonance (CMR) measures of left ventricular and atrial structure and function and aortic distensibility, in the UK Biobank. Clinical outcomes were ascertained using health record linkage over 12.3 yr of prospective follow-up. Two-sample Mendelian randomization (MR) was conducted to assess causal associations between BMD and CMR metrics using genetic instrumental variables identified from published genome-wide association studies. The analysis included 485 257 participants (55% women, mean age 56.5 ± 8.1 yr). Higher heel eBMD was associated with lower odds of all prevalent CVDs considered. The greatest magnitude of effect was seen in association with HF and NICM, where 1-SD increase in eBMD was associated with 15% lower odds of HF and 16% lower odds of NICM. Association between eBMD and incident IHD and MI was non-significant; the strongest relationship was with incident HF (SHR: 0.90 [95% CI, 0.89-0.92]). Higher eBMD was associated with a decreased risk in all-cause, CVD, and IHD mortality, in the fully adjusted model. Higher eBMD was associated with greater aortic distensibility; associations with other CMR metrics were null. Higher heel eBMD is linked to reduced risk of a range of prevalent and incident CVD and mortality outcomes. Although observational analyses suggest associations between higher eBMD and greater aortic compliance, MR analysis did not support a causal relationship between genetically predicted BMD and CMR phenotypes. These findings support the notion that bone-cardiovascular associations reflect shared risk factors/mechanisms rather than direct causal pathways.
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