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Regional Variations in the Intra- and Intervertebral Trabecular Microarchitecture of the Osteoporotic Axial Skeleton with Reference to the Direction of Puncture.

Guido SchröderThomas MittlmeierPatrick GahrSahra UlusoyLaura HiepeMarko SchulzeAndreas GötzReimer AndresenHans-Christof Schober
Published in: Diagnostics (Basel, Switzerland) (2024)
The results presented different distributions and behaviors of trabecular density, with lower density in the mid-vertebral region over the entire breadth of the vertebrae. Reduced trabecular density caused a higher degree of anisotropy and was, therefore, associated with a lower capacity to sustain biomechanical loads. Fractures in fish vertebrae were easily explained by this phenomenon. The different changes in these structures could be responsible, in part, for the changes in the TBS determined using dual-energy X-ray absorptiometry. These results confirm the clinical relevance of the TBS.
Keyphrases
  • bone mineral density
  • dual energy
  • postmenopausal women
  • computed tomography
  • body composition
  • image quality
  • high resolution
  • contrast enhanced
  • magnetic resonance imaging
  • monte carlo