Literature DB >> 26105660

Expedited patient-specific assessment of contact stress exposure in the ankle joint following definitive articular fracture reduction.

Andrew M Kern1, Donald D Anderson2.   

Abstract

Acute injury severity, altered joint kinematics, and joint incongruity are three important mechanical factors linked to post-traumatic osteoarthritis (PTOA). Finite element analysis (FEA) was previously used to assess the influence of increased contact stress due to joint incongruity on PTOA development. While promising agreement with PTOA development was seen, the inherent complexities of contact FEA limited the numbers of subjects that could be analyzed. Discrete element analysis (DEA) is a simplified methodology for contact stress computation, which idealizes contact surfaces as a bed of independent linear springs. In this study, DEA was explored as an expedited alternative to FEA contact stress exposure computation. DEA was compared to FEA using results from a previously completed validation study of two cadaveric human ankles, as well as a previous study of post-operative contact stress exposure in 11 patients with tibial plafond fracture. DEA-computed maximum contact stresses were within 19% of those experimentally measured, with 90% of the contact area having computed contact stress values within 1MPa of those measured. In the 11 fractured ankles, maximum contact stress and contact area differences between DEA and FEA were 0.85 ± 0.64 MPa and 22.5 ± 11.5mm(2). As a predictive measure for PTOA development, both DEA and FEA had 100% concordance with presence of OA (KL grade ≥ 2) and >95% concordance with KL grade at 2 years. These results support DEA as a reasonable alternative to FEA for computing contact stress exposures following surgical reduction of a tibial plafond fracture.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Ankle; Contact stress; Discrete element; Finite element; Posttraumatic osteoarthritis

Mesh:

Year:  2015        PMID: 26105660      PMCID: PMC4636344          DOI: 10.1016/j.jbiomech.2015.05.030

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  23 in total

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Authors:  E Y S Chao; K Y Volokh; H Yoshida; N Shiba; T Ide
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4.  Physical validation of a patient-specific contact finite element model of the ankle.

Authors:  Donald D Anderson; Jane K Goldsworthy; Wendy Li; M James Rudert; Yuki Tochigi; Thomas D Brown
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Authors:  Todd O McKinley; Joseph Borrelli; Darryl D D'Lima; Bridgette D Furman; Peter V Giannoudis
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6.  Is elevated contact stress predictive of post-traumatic osteoarthritis for imprecisely reduced tibial plafond fractures?

Authors:  Donald D Anderson; Christopher Van Hofwegen; J Lawrence Marsh; Thomas D Brown
Journal:  J Orthop Res       Date:  2011-01       Impact factor: 3.494

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  10 in total

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Review 4.  Summary Report of the Arthritis Foundation and the American Orthopaedic Foot & Ankle Society's Symposium on Targets for Osteoarthritis Research: Part 1: Epidemiology, Pathophysiology, and Current Imaging Approaches.

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Authors:  Bruce P Ayati; Georgi I Kapitanov; Mitchell C Coleman; Donald D Anderson; James A Martin
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6.  Complementary models reveal cellular responses to contact stresses that contribute to post-traumatic osteoarthritis.

Authors:  James A Martin; Donald D Anderson; Jessica E Goetz; Douglas Fredericks; Douglas R Pedersen; Bruce P Ayati; J Lawrence Marsh; Joseph A Buckwalter
Journal:  J Orthop Res       Date:  2016-08-26       Impact factor: 3.494

7.  Objective Structured Assessments of Technical Skills (OSATS) Does Not Assess the Quality of the Surgical Result Effectively.

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8.  Joint contact stresses calculated for acetabular dysplasia patients using discrete element analysis are significantly influenced by the applied gait pattern.

Authors:  Holly D Thomas-Aitken; Michael C Willey; Jessica E Goetz
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9.  An extended discrete element method for the estimation of contact pressure at the ankle joint during stance phase.

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  10 in total

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