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Fractures or other major bone defects in the mandible are commonly treated by mounting a reconstruction plate at the fracture site. To avoid complications due to loosening of the implant or the fixation screws, electrical stimulation presents a possibility to accelerate bone healing. The aim of this study was to investigate different combinations of activated electrodes and plate designs regarding their feasibility for electrostimulation of the mandibular bone. The electric field distribution for multiple implant designs was computed using the finite element method.
The results suggest that the electrode insulation renders a crucial parameter, which influences substantially the stimulation impact and its power consumption.
Your purchase has been completed. Your documents are now available to view. Purchase article. From the journal Current Directions in Biomedical Engineering. Download article PDF. Cite this Share this. Abstract Fractures or other major bone defects in the mandible are commonly treated by mounting a reconstruction plate at the fracture site. Keywords: Electro-stimulative implants ; bone defects ; mandible ; Finite element method. Published Online: Cite this article.
Raben, H. Numerical design studies on a novel electrostimulative osteosynthesis system for the mandible. Current Directions in Biomedical Engineering , 3 2 , Current Directions in Biomedical Engineering, Vol.
Current Directions in Biomedical Engineering. Copied to clipboard. Copy to clipboard. Share this article. Supplementary Materials. Please login or register with De Gruyter to order this product. Register Log in. Volume 3 Issue 2. This issue. All issues. Articles in the same Issue Simultaneous acquisition of 4D ultrasound and wireless electromagnetic tracking for in-vivo accuracy validation.