Title :
Trabecular Bone Analysis in CT and X-Ray Images of the Proximal Femur for the Assessment of Local Bone Quality
Author :
Fritscher, Karl ; Grünerbl, Agnes ; Hänni, Markus ; Suhm, Norbert ; Hengg, Clemens ; Schubert, Rainer
Author_Institution :
Dept. of Med. Image Anal., Univ. for Health Sci., Med. Inf. & Technol., Hall in Tirol, Austria
Abstract :
Currently, conventional X-ray and CT images as well as invasive methods performed during the surgical intervention are used to judge the local quality of a fractured proximal femur. However, these approaches are either dependent on the surgeon´s experience or cannot assist diagnostic and planning tasks preoperatively. Therefore, in this work a method for the individual analysis of local bone quality in the proximal femur based on model-based analysis of CT- and X-ray images of femur specimen will be proposed. A combined representation of shape and spatial intensity distribution of an object and different statistical approaches for dimensionality reduction are used to create a statistical appearance model in order to assess the local bone quality in CT and X-ray images. The developed algorithms are tested and evaluated on 28 femur specimen. It will be shown that the tools and algorithms presented herein are highly adequate to automatically and objectively predict bone mineral density values as well as a biomechanical parameter of the bone that can be measured intraoperatively.
Keywords :
biomechanics; bone; computerised tomography; diagnostic radiography; fracture; orthopaedics; statistical analysis; CT images; X-ray images; biomechanical parameter; bone mineral density; bone quality; bone quality assessment; proximal femur; shape representation; spatial intensity distribution; statistical appearance model; surgical intervention; trabecular bone analysis; Cancellous bone; Computed tomography; Density measurement; Image analysis; Minerals; Shape; Surgery; Surges; Testing; X-ray imaging; Appearance models; bone quality; model based analysis; proximal femur; trabecular bone; Algorithms; Biomechanics; Bone and Bones; Female; Femoral Fractures; Femur; Humans; Image Interpretation, Computer-Assisted; Male; Models, Biological; Models, Statistical; Principal Component Analysis; Regression Analysis; Tomography, X-Ray Computed; Torque;
Journal_Title :
Medical Imaging, IEEE Transactions on
DOI :
10.1109/TMI.2009.2020734