DocumentCode
3684717
Title
The impact of bone microstructure on the field distribution of electrostimulative implants
Author
Ulf Zimmermann;Ursula van Rienen
Author_Institution
Institute of General Electrical Engineering, University of Rostock, 18059, Germany
fYear
2015
Firstpage
3545
Lastpage
3548
Abstract
Since the 1980s several methods of electrostimulative techniques have been developed to accelerate bone regeneration during orthopedic treatment. These techniques have proven to provide increased bone formation while curing fractures and bone diseases. The electric parameters, however, are mostly results of empiric research regarding the bone tissue as homogeneous material. Especially cancellous bone, which is the objective of a new electrostimulative total hip revision system, has a porous, inhomogeneous microstructure. The present work investigates numerically the electric field distribution within this tissue using microscopic computer tomography scans of small bone samples. The 3-dimensional X-ray absorption values of these scans are correlated with conductivity values from literature applying different correlation approaches. Compared to electric fields within a homogeneous material strong elevations can be observed within the structures which include most of the bone forming cells.
Keywords
"Bones","Electric fields","Conductivity","Cancellous bone","Absorption","Implants"
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2015 37th Annual International Conference of the IEEE
ISSN
1094-687X
Electronic_ISBN
1558-4615
Type
conf
DOI
10.1109/EMBC.2015.7319158
Filename
7319158
Link To Document