Thickness optimization of auricular silicone scaffold based on finite element analysis.

Abstract:

:An optimized thickness of a transplantable auricular silicone scaffold was researched. The original image data were acquired from CT scans, and reverse modeling technology was used to build a digital 3D model of an auricle. The transplant process was simulated in ANSYS Workbench by finite element analysis (FEA), solid scaffolds were manufactured based on the FEA results, and the transplantable artificial auricle was finally obtained with an optimized thickness, as well as sufficient intensity and hardness. This paper provides a reference for clinical transplant surgery.

authors

Jiang T,Shang J,Tang L,Wang Z

doi

10.1016/j.jmbbm.2015.08.032

subject

Has Abstract

pub_date

2016-01-01 00:00:00

pages

397-402

eissn

1751-6161

issn

1878-0180

pii

S1751-6161(15)00316-1

journal_volume

53

pub_type

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