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Erschienen in: Medical & Biological Engineering & Computing 11/2017

28.03.2017 | Original Article

Evaluation of the parameters affecting bone temperature during drilling using a three-dimensional dynamic elastoplastic finite element model

verfasst von: Yung-Chuan Chen, Yuan-Kun Tu, Jun-Yan Zhuang, Yi-Jung Tsai, Cheng-Yo Yen, Chih-Kun Hsiao

Erschienen in: Medical & Biological Engineering & Computing | Ausgabe 11/2017

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Abstract

A three-dimensional dynamic elastoplastic finite element model was constructed and experimentally validated and was used to investigate the parameters which influence bone temperature during drilling, including the drill speed, feeding force, drill bit diameter, and bone density. Results showed the proposed three-dimensional dynamic elastoplastic finite element model can effectively simulate the temperature elevation during bone drilling. The bone temperature rise decreased with an increase in feeding force and drill speed, however, increased with the diameter of drill bit or bone density. The temperature distribution is significantly affected by the drilling duration; a lower drilling speed reduced the exposure duration, decreases the region of the thermally affected zone. The constructed model could be applied for analyzing the influence parameters during bone drilling to reduce the risk of thermal necrosis. It may provide important information for the design of drill bits and surgical drilling powers.

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Metadaten
Titel
Evaluation of the parameters affecting bone temperature during drilling using a three-dimensional dynamic elastoplastic finite element model
verfasst von
Yung-Chuan Chen
Yuan-Kun Tu
Jun-Yan Zhuang
Yi-Jung Tsai
Cheng-Yo Yen
Chih-Kun Hsiao
Publikationsdatum
28.03.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Medical & Biological Engineering & Computing / Ausgabe 11/2017
Print ISSN: 0140-0118
Elektronische ISSN: 1741-0444
DOI
https://doi.org/10.1007/s11517-017-1644-8

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