DocumentCode
386407
Title
Biomechanical properties of the medial meniscus in experimental animal models
Author
Sweigart, M.A. ; Zhu, C.F. ; Agrawal, C.M. ; Clanton, T.C. ; Athanasiou, K.A.
Author_Institution
Dept. of Bioeng., Rice Univ., Houston, TX, USA
Volume
1
fYear
2002
fDate
2002
Firstpage
442
Abstract
The material properties of the baboon, bovine, canine, human, lapine, and porcine medial meniscus were determined in six locations: the anterior, central, and posterior portions of the femoral and tibial sides of the tissue. In situ creep and recovery indentation experiments were performed using a creep indentation apparatus. The entire creep curve was fitted with a finite element optimization method to determine the material properties. Results show significant variations in the aggregate modulus, Poisson´s ratio, permeability, and shear modulus between the six testing locations both intraspecies and interspecies. In general, the canine model exhibits the highest aggregate and shear moduli, whereas the lapine model has the highest permeability and Poisson´s ratio. The aggregate modulus and shear modulus in the human is the most similar to bovine. The human permeability values are the closest to the canine and baboon model. Overall, this study shows that caution must be exercised when comparing the menisci between different animal models.
Keywords
Poisson ratio; biological techniques; biological tissues; biomechanics; creep; curve fitting; finite element analysis; orthopaedics; permeability; physiological models; shear modulus; 1 to 2 year; 12.8 year; 33.3 year; 4 year; Poisson´s ratio; aggregate modulus; animal models; anterior portion; baboon model; biomechanical properties; canine model; central portion; femur; finite element optimization method; human; in situ creep; lapine model; medial meniscus; permeability; porcine model; posterior portion; recovery indentation; shear modulus; soft tissue mechanics; tibia; Aggregates; Animals; Bovine; Creep; Finite element methods; Humans; Material properties; Optimization methods; Permeability; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology, 2002. 24th Annual Conference and the Annual Fall Meeting of the Biomedical Engineering Society EMBS/BMES Conference, 2002. Proceedings of the Second Joint
ISSN
1094-687X
Print_ISBN
0-7803-7612-9
Type
conf
DOI
10.1109/IEMBS.2002.1136886
Filename
1136886
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