Title of article
Computer simulating a clinical trial of a load-bearing implant: An example of an intramedullary prosthesis
Author/Authors
Prendergast، نويسنده , , P.J. and Galibarov، نويسنده , , P.E. and Lowery، نويسنده , , C. and Lennon، نويسنده , , A.B.، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
8
From page
1880
To page
1887
Abstract
Computational modelling is becoming ever more important for obtaining regulatory approval for new medical devices. An accepted approach is to infer performance in a population from an analysis conducted for an idealised or ‘average’ patient; we present here a method for predicting the performance of an orthopaedic implant when released into a population—effectively simulating a clinical trial. Specifically we hypothesise that an analysis based on a method for predicting the performance in a population will lead to different conclusions than an analysis based on an idealised or ‘average’ patient. To test this hypothesis we use a finite element model of an intramedullary implant in a bone whose size and remodelling activity is different for each individual in the population. We compare the performance of a low Young’s modulus implant ( E = 20 GPa ) to one with a higher Young’s modulus (200 GPa). Cyclic loading is applied and failure is assumed when the migration of the implant relative to the bone exceeds a threshold magnitude. The analysis for an idealised of ‘average’ patient predicts that the lower modulus device survives longer whereas the analysis simulating a clinical trial predicts no statistically-significant tendency ( p = 0.77 ) for the low modulus device to perform better. It is concluded that population-based simulations of implant performance–simulating a clinical trial–present a very valuable opportunity for more realistic computational pre-clinical testing of medical devices.
Keywords
Stochastic model , Finite element analysis , Mechanobiology , Simulated clinical trials , Intramedullary fixation
Journal title
Journal of the Mechanical Behavior of Biomedical Materials
Serial Year
2011
Journal title
Journal of the Mechanical Behavior of Biomedical Materials
Record number
1405035
Link To Document