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Updated: Jun 1, 2026

Scanning Skeletal Remains for Bone Mineral Density in Forensic Contexts
Published on: January 29, 2018
Volumetric bone mineral density and bone structure in childhood chronic kidney disease
Rachel J Wetzsteon1, Heidi J Kalkwarf, Justine Shults
1Department of Pediatrics, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.
Insights
Children with chronic kidney disease (CKD) show altered bone density, with higher trabecular bone mineral density (BMD) in younger patients and reduced cortical bone area and BMD in more severe CKD stages. Secondary hyperparathyroidism exacerbates these bone changes in pediatric CKD.
Area of Science:
- Pediatric Nephrology
- Skeletal Biology
- Bone Metabolism
Background:
- Chronic kidney disease (CKD) in children is linked to skeletal deformities and increased fracture risk.
- The specific effects of CKD on bone density and dimensions during growth remain largely unknown.
Purpose of the Study:
- To investigate the impact of CKD severity on volumetric bone mineral density (vBMD) and cortical bone dimensions in children.
- To explore the relationship between parathyroid hormone (PTH) levels and bone parameters in pediatric CKD.
Main Methods:
- Quantitative computed tomography (QCT) scans of the tibia were performed on 156 children with CKD (stages 2-5D) and 831 healthy controls (ages 5-21).
- Z-scores for trabecular BMD (TrabBMD), cortical BMD (CortBMD), cortical area (CortArea), and endosteal circumference (EndoC) were calculated.
- Statistical analyses examined associations between CKD severity, PTH levels, bone biomarkers, and bone parameters.
Main Results:
- Younger children with CKD showed higher TrabBMD Z-scores, an effect attenuated with age and CKD severity.
- Cortical area (CortArea) and CortBMD Z-scores were significantly lower in children with CKD stages 4-5 and 5D compared to healthy controls.
- Elevated PTH levels correlated with higher TrabBMD Z-scores in CKD patients, while higher PTH and bone turnover markers were linked to lower CortBMD, CortArea, and larger EndoC.
Conclusions:
- Childhood CKD, particularly with secondary hyperparathyroidism, is associated with reduced cortical bone dimensions and density, and increased trabecular bone density in younger children.
- These findings highlight significant alterations in bone structure during growth in pediatric CKD.
- Further research is needed to determine the clinical implications for fracture risk and the potential for reversibility of these bone abnormalities.
Abstract:
Chronic kidney disease (CKD) is associated with increased fracture risk and skeletal deformities. The impact of CKD on volumetric bone mineral density (vBMD) and cortical dimensions during growth is unknown. Tibia quantitative computed tomographic scans were obtained in 156 children with CKD [69 stages 2 to 3, 51 stages 4 to 5, and 36 stage 5D (dialysis)] and 831 healthy participants aged 5 to 21 years. Sex-, race-, and age- or tibia length-specific Z-scores were generated for trabecular BMD (TrabBMD), cortical BMD (CortBMD), cortical area (CortArea) and endosteal circumference (EndoC). Greater CKD severity was associated with a higher TrabBMD Z-score in younger participants (p < .001) compared with healthy children; this association was attenuated in older participants (interaction p < .001). Mean CortArea Z-score was lower (p < .01) in CKD 4-5 [-0.49, 95% confidence interval (CI) -0.80, -0.18)] and CKD 5D (-0.49, 95% CI -0.83, -0.15) compared with healthy children. Among CKD participants, parathyroid hormone (PTH) levels were positively associated with TrabBMD Z-score (p < .01), and this association was significantly attenuated in older participants (interaction p < .05). Higher levels of PTH and biomarkers of bone formation (bone-specific alkaline phosphatase) and resorption (serum C-terminal telopeptide of type 1 collagen) were associated with lower CortBMD and CortArea Z-scores and greater EndoC Z-score (r = 0.18-0.36, all p ≤ .02). CortBMD Z-score was significantly lower in CKD participants with PTH levels above versus below the upper limit of the Kidney Disease Outcome Quality Initiative (KDOQI) CKD stage-specific target range: -0.46 ± 1.29 versus 0.12 ± 1.14 (p < .01). In summary, childhood CKD and secondary hyperparathyroidism were associated with significant reductions in cortical area and CortBMD and greater TrabBMD in younger children. Future studies are needed to establish the fracture implications of these alterations and to determine if cortical and trabecular abnormalities are reversible.
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