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Articles

Rigid-body modeling of knee cartilage and meniscus using experimental pressure-strain curves

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Pages 574-584 | Received 13 Jun 2018, Accepted 30 Dec 2018, Published online: 01 Mar 2019
 

Abstract

Rigid-body knee models have gained popularity thanks to computational speed and ease of setup compared to finite element models—showing exciting potential for clinical patient-specific models in the future. However, Rigid-body studies in general have encountered difficulty in modeling cartilage and especially meniscus material properties, often relying on computationally costly optimization techniques. This paper presents two new methods to alleviate the difficulty—one to define model contact pressure and one to define meniscus internal forces—and is the first to our knowledge to use experimental pressure-strain curves from the literature to simulate cartilage and meniscus behavior in a rigid body model. This paper describes the methodology to derive the proof of concept model and preliminary results from a gait simulation based on ISO 14243-1.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

This work was funded in part by the NSF (RUI 1258555) and by the UTEP 2014 COURI-Provost Summer Student Research Assistant Program.

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