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New approaches for interpreting projected bone densitometry data

Journal of Bone and Mineral Research · 1992 · Vol. 7(2) · pp. 137–145
D. R. CarterMary BouxseinRobert Marcus

Abstract

Bone densitometry using dual-photon absorptiometry (DPA) or dual-energy x-ray absorptiometry (DXA) has become a standard method for assessing bone mineral content in the spine and other skeletal regions. A projected areal density, referred to as bone mineral density (BMD,g/cm2), is normally calculated to assess regional bone density and strength. We demonstrate that this measure can be misleading when used to compare bones of different sizes due to inherent biases caused by bone thickness differences. For example, assuming that volumetric bone density remains constant and bony linear dimensions are proportional to height, a 20% increase in height would result in a 20% increase in both the thickness and the BMD of any bone. We describe new analysis methods to reduce the confounding effect of bone size, and we introduce a parameter, bone mineral apparent density (BMAD, g/cm3), that better reflects bone apparent density. Using this parameter, we calculate a quantity that serves as an index of bone strength (IBS, g2/cm4) for whole vertebral bodies. These analyses were applied to lumbar spine (L2-4) DXA measurements in a population of women 17-40 years old and appear to offer advantages to conventional techniques.

Bone health and osteoporosis researchBone and Joint DiseasesBody Composition Measurement TechniquesDensitometryBone mineralBone densityDual energyDual-energy X-ray absorptiometryPopulationOsteoporosisConfoundingNuclear medicineMedicine

MeSH terms

AdolescentAdultData Interpretation, StatisticalFemaleHumansLumbar VertebraeRisk FactorsAbsorptiometry, PhotonBone Density

Funding

  • U.S. Department of Veterans Affairs
  • National Institutes of Health
  • Rehabilitation Research and Development Service
Citations
1,059
FWCI
18.13
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References
42
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99%
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Citations per year
References
The compressive behavior of bone as a two-phase porous structure
Journal of Bone and Joint Surgery · 1977 · 1,992 citations
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