Publication:
Investigation of lattice infill parameters for additively manufactured bone fracture plates to reduce stress shielding

Placeholder

Program

School / College / Institute

College of Engineering
GRADUATE SCHOOL OF SCIENCES AND ENGINEERING
Research Center

KU Authors

Co-Authors

Karaismailoglu, Bedri
Ashkani-Esfahani, Soheil

Publication Date

Language

Embargo Status

Journal Title

Journal ISSN

Volume Title

Alternative Title

Abstract

Background: Stress shielding is a detrimental phenomenon caused by the stiffness mismatch between metallic bone plates and bone tissue, which can hamper fracture healing. Additively manufactured plates can decrease plate stiffness and alleviate the stress shielding effect. Methods: Rectilinear lattice plates with varying cell sizes, wall thicknesses, and orientations are computationally generated. Finite element analysis is used to calculate the four-point bending stiffness and strength of the plates. The mechanical behaviors of three different lattice plates are also simulated under a simple diaphyseal fracture fixation scenario. Results: The study shows that with different combinations of lattice infill parameters, plates with up to 68% decrease in stiffness compared to the 100% infill plate can be created. Moreover, in the fixation simulations, the least stiff lattice plate displays 53% more average stress distribution at the healing callus region compared to the 100% infill plate. Conclusions: Using computational techniques, it has been demonstrated that additively manufactured stiffness-reduced bone plates can successfully address stress shielding with the strategic modulation of lattice infill pa-rameters. Lattice plates with design versatility have the potential for use in various fracture fixation scenarios.

Source

Publisher

Pergamon-Elsevier Science Ltd

Subject

Biology, Computer science

Citation

Has Part

Source

Computers in Biology and Medicine

Book Series Title

Edition

DOI

10.1016/j.compbiomed.2023.107062

item.page.datauri

Link

Rights

Rights URL (CC Link)

Copyrights Note

Endorsement

Review

Supplemented By

Referenced By

0

Views

0

Downloads

View PlumX Details