A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour

The evaluation of the knee joint behavior is fundamental in many applications, such as joint modeling, prosthesis and orthosis design. In-vitro tests are important in order to analyse knee behavior when simulating various loading conditions and studying physiology of the joint. A new test rig for...

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Bibliographic Details
Main Author: Forlani, Margherita <1986>
Other Authors: Parenti Castelli, Vincenzo
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2015
Subjects:
Online Access:http://amsdottorato.unibo.it/7137/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-71372015-12-26T05:17:34Z A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour Forlani, Margherita <1986> ING-IND/13 Meccanica applicata alle macchine The evaluation of the knee joint behavior is fundamental in many applications, such as joint modeling, prosthesis and orthosis design. In-vitro tests are important in order to analyse knee behavior when simulating various loading conditions and studying physiology of the joint. A new test rig for in-vitro evaluation of the knee joint behavior is presented in this paper. It represents the evolution of a previously proposed rig, designed to overcome its principal limitations and to improve its performances. The design procedure and the adopted solution in order to satisfy the specifications are presented here. Thanks to its 6-6 Gough-Stewart parallel manipulator loading system, the rig replicates general loading conditions, like daily actions or clinical tests, on the specimen in a wide range of flexion angles. The restraining actions of knee muscles can be simulated when active actions are simulated. The joint motion in response to the applied loads, guided by passive articular structures and muscles, is permitted by the characteristics of the loading system which is force controlled. The new test rig guarantees visibility so that motion can be measured by an optoelectronic system. Furthermore, the control system of the new test rig allows the estimation of the contribution of the principal leg muscles in guaranteeing the equilibrium of the joint by the system for muscle simulation. Accuracy in positioning is guaranteed by the designed tibia and femur fixation systems,which allow unmounting and remounting the specimen in the same pose. The test rig presented in this paper permits the analysis of the behavior of the knee joint and comparative analysis on the same specimen before and after surgery, in a way to assess the goodness of prostheses or surgical treatments. Alma Mater Studiorum - Università di Bologna Parenti Castelli, Vincenzo 2015-04-24 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/7137/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic ING-IND/13 Meccanica applicata alle macchine
spellingShingle ING-IND/13 Meccanica applicata alle macchine
Forlani, Margherita <1986>
A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour
description The evaluation of the knee joint behavior is fundamental in many applications, such as joint modeling, prosthesis and orthosis design. In-vitro tests are important in order to analyse knee behavior when simulating various loading conditions and studying physiology of the joint. A new test rig for in-vitro evaluation of the knee joint behavior is presented in this paper. It represents the evolution of a previously proposed rig, designed to overcome its principal limitations and to improve its performances. The design procedure and the adopted solution in order to satisfy the specifications are presented here. Thanks to its 6-6 Gough-Stewart parallel manipulator loading system, the rig replicates general loading conditions, like daily actions or clinical tests, on the specimen in a wide range of flexion angles. The restraining actions of knee muscles can be simulated when active actions are simulated. The joint motion in response to the applied loads, guided by passive articular structures and muscles, is permitted by the characteristics of the loading system which is force controlled. The new test rig guarantees visibility so that motion can be measured by an optoelectronic system. Furthermore, the control system of the new test rig allows the estimation of the contribution of the principal leg muscles in guaranteeing the equilibrium of the joint by the system for muscle simulation. Accuracy in positioning is guaranteed by the designed tibia and femur fixation systems,which allow unmounting and remounting the specimen in the same pose. The test rig presented in this paper permits the analysis of the behavior of the knee joint and comparative analysis on the same specimen before and after surgery, in a way to assess the goodness of prostheses or surgical treatments.
author2 Parenti Castelli, Vincenzo
author_facet Parenti Castelli, Vincenzo
Forlani, Margherita <1986>
author Forlani, Margherita <1986>
author_sort Forlani, Margherita <1986>
title A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour
title_short A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour
title_full A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour
title_fullStr A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour
title_full_unstemmed A New Test Rig for In-Vitro Evaluation of the Knee Joint Behaviour
title_sort new test rig for in-vitro evaluation of the knee joint behaviour
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2015
url http://amsdottorato.unibo.it/7137/
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