Quantitative Analysis of Bone Microstructure Using Tomosynthesis

Abstract

The purpose of the project is to determine the potential of Digital Tomosynthesis (DTS) for quantitative analysis of vertebral bone quality and for predicting vertebral bone fragility. The current scope, as a proof of concept study, is to compare parameters derived from DTS to those measured from microCT and test their ability to predict in vitro vertebral strength by a set of destructive tests on vertebrae from human cadavers. We characterized the DTS system for its ability to resolve features, shapes and densities using a number of man-made reference materials. We have noted that a single best scan is obtained in a scan direction oblique to the major orientation of the structure of interest but multiple orthogonal scans can provide complementary information. We noted that zero angle view of the scans provides density information complementary to the structural information obtained through the synthesis of all views. By correlating DTS-based parameters of cancellous microstructure (fractal dimension, lacunarity, mean intercept length and line fraction deviation) to those derived from microCT (distribution properties of bone volume fraction, trabecular thickness, number and separation, and degree of anisotropy) and to bone stiffness estimated from large scale finite element analysis, we demonstrated that parameters of cancellous bone microstructure derived from DTS correlate with those derived from microCT and increase prediction accuracy of bone stiffness over bone mass alone. The importance of analysis volume and image pre-processing were assessed and determined to be important factors in correlational models between DTS-based parameters of cancellous microstructure and microCTbased stereology and finite element parameters.

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Document Details

Document Type
Technical Report
Publication Date
Oct 01, 2013
Accession Number
ADA594956

Entities

People

  • Yener N. Yeni

Organizations

  • Henry Ford Health

Tags

Communities of Interest

  • Biomedical

DTIC Thesaurus Topics

  • Accuracy
  • Bone Diseases
  • Bone Fractures
  • Detectors
  • Geometry
  • Health Services
  • Image Processing
  • Institutional Review Board
  • Materials
  • Mechanical Properties
  • Mechanics
  • Orientation (Direction)
  • Spine
  • Three Dimensional
  • Tomography
  • United States
  • X-Ray Computed Tomography

Readers

  • Image Processing and Computer Vision.
  • Immunology and Pathology
  • Regression Analysis.