Rapid prototyping of replica knee implants for in vitro testing

Author:

Verjans Mark1,Asseln Malte2,Radermacher Klaus2

Affiliation:

1. 1Chair of Medical Engineering at Helmholtz-Institute for Biomedical Engineering of the RWTH Aachen University, Pauwelsstraße 20, 52074 Aachen,Germany

2. 2Chair of Medical Engineering at Helmholtz-Institute for Biomedical Engineering of the RWTH Aachen University,Germany

Abstract

AbstractThe understanding of the complex biomechanics of the knee is a key for an optimal implant design. To easily investigate the influence of prosthetic designs on knee biomechanics a rapid prototyping workflow for knee implants has been developed and evaluated. Therefore, different manufacturing technologies and post-treatment methods have been examined and overall seven different replica knee implants were manufactured. For evaluation, the manufacturing properties such as surface accuracy and roughness were determined and kinematic behaviour was investigated in a novel knee testing rig. It was carried out that PolyJet-Modelling with a sanded surface resulted in changed kinematic patterns compared to a usual CoCr-UHMWPE implant. However, fused deposition modelling using ABS and subsequent surface smoothening with acetone vapor showed the lowest roughness of the manufactured implants and only minor kinematic differences. For this reason this method constitutes a promising approach towards an optimal implant design for improved patient-satisfaction and long lifetime of the implant. Finally the workflow is not only limited to the knee.

Publisher

Walter de Gruyter GmbH

Subject

Biomedical Engineering

Reference12 articles.

1. Rapid prototyping for in vitro knee rig investigations of prosthetized knee biomechanics: comparison with cobalt-chromium alloy implant material;BioMed Res Int,2015

2. 18 Causes and Diagnosis of Aseptic Loosening After Total Knee Replacement

3. The use of rapid prototyped implants to simulate knee joint abnormalities for in vitro testing: a validation study with replica implants of the native trochlea;Proceedings Proc Inst Mech Eng H,2014

4. Dynamic finite element knee simulation for evaluation of knee replacement mechanics;J Biomech,2012

5. Rapid prototyping for in vitro knee rig investigations of prosthetized knee biomechanics: comparison with cobalt-chromium alloy implant material;BioMed Res Int,2015

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