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Volumn 61, Issue 1, 2009, Pages 69-87

Modeling of articular cartilage replacement materials

Author keywords

Diffusion model; Finite element simulation; Material testing; Viscoelasticity

Indexed keywords


EID: 61649093786     PISSN: 03732029     EISSN: None     Source Type: Journal    
DOI: None     Document Type: Article
Times cited : (11)

References (37)
  • 1
    • 0034790874 scopus 로고    scopus 로고
    • A linear viscoelastic biphasic model for soft tissues based on the theory of porous media
    • W. EHLERS, B. MARKERT, A linear viscoelastic biphasic model for soft tissues based on the theory of porous media, Transactions of ASME, 123, 418-424, 2001.
    • (2001) Transactions of ASME , vol.123 , pp. 418-424
    • EHLERS, W.1    MARKERT, B.2
  • 2
    • 0035034736 scopus 로고    scopus 로고
    • Biphasic poroviscoelastic simulation of the unconfined compression of articular cartilage: I - Simultaneous prediction of reaction force and lateral displacement
    • M.R. DISILVESTRO, Q. ZHU, M. WONG, J.S. JURVELIN, J.-K.F. SUH, Biphasic poroviscoelastic simulation of the unconfined compression of articular cartilage: I - Simultaneous prediction of reaction force and lateral displacement, J. Biomechanical Eng., 123, 191-197, 2001.
    • (2001) J. Biomechanical Eng , vol.123 , pp. 191-197
    • DISILVESTRO, M.R.1    ZHU, Q.2    WONG, M.3    JURVELIN, J.S.4    SUH, J.-K.F.5
  • 3
    • 33751343651 scopus 로고    scopus 로고
    • A nonlinear biphasic viscohyperelastic model for articular cartilage
    • J.J. GARCÍA, D.H. CORTÉS, A nonlinear biphasic viscohyperelastic model for articular cartilage, J. Biomechanics, 39, 2991-2998, 2006.
    • (2006) J. Biomechanics , vol.39 , pp. 2991-2998
    • GARCÍA, J.J.1    CORTÉS, D.H.2
  • 4
    • 34248203281 scopus 로고    scopus 로고
    • A biphasic viscohyperelastic fibril-reinforced model for arcticular cartilage: Formulation and comparison with experimental data
    • J.J. GARCÍA, D.H. CORTÉS, A biphasic viscohyperelastic fibril-reinforced model for arcticular cartilage: Formulation and comparison with experimental data, J. Biomechanics, 40, 1737-1744, 2007.
    • (2007) J. Biomechanics , vol.40 , pp. 1737-1744
    • GARCÍA, J.J.1    CORTÉS, D.H.2
  • 5
    • 18044379517 scopus 로고    scopus 로고
    • A fibril-reinforced poroviscoelastic swelling model for articular cartilage
    • W. WILSON, C.C. VAN DONKELAAR, B. VAN RIETBERGEN, R. HUISKES, A fibril-reinforced poroviscoelastic swelling model for articular cartilage, J. Biomechanics, 38, 1195-1204, 2005.
    • (2005) J. Biomechanics , vol.38 , pp. 1195-1204
    • WILSON, W.1    VAN DONKELAAR, C.C.2    VAN RIETBERGEN, B.3    HUISKES, R.4
  • 6
    • 27744456569 scopus 로고    scopus 로고
    • A numerical method for the continuous spectrum biphasic poroviscoelastic model of articular cartilage
    • M.A. HAIDER, R.C. SCHUGART, A numerical method for the continuous spectrum biphasic poroviscoelastic model of articular cartilage, J. Biomechanics, 39, 177-183, 2006.
    • (2006) J. Biomechanics , vol.39 , pp. 177-183
    • HAIDER, M.A.1    SCHUGART, R.C.2
  • 7
    • 0033811124 scopus 로고    scopus 로고
    • The mechanical environment of the chondrocyte: A biphasic finite element model of cell-matrix interactions in articular cartilage
    • F. GUILAK, V.C. MOW, The mechanical environment of the chondrocyte: a biphasic finite element model of cell-matrix interactions in articular cartilage, J. Biomechanics, 33, 1663-1673, 2000.
    • (2000) J. Biomechanics , vol.33 , pp. 1663-1673
    • GUILAK, F.1    MOW, V.C.2
  • 8
    • 0037170285 scopus 로고    scopus 로고
    • A nonlinear finite element formulation for axisymmetric torsion of biphasic materials
    • X.N. MENG, M.A. LEROUX, T.A. LAURSEN, L.A. SETTON, A nonlinear finite element formulation for axisymmetric torsion of biphasic materials, Int. J. Solids and Structures, 39, 879-895, 2002.
    • (2002) Int. J. Solids and Structures , vol.39 , pp. 879-895
    • MENG, X.N.1    LEROUX, M.A.2    LAURSEN, T.A.3    SETTON, L.A.4
  • 9
    • 0018983548 scopus 로고
    • Biphasic creep and stress relaxation of articular cartilage in compression: Theory and experiments
    • V.C. MOW, S.C. KUEI, W.M. LAI, C.G. ARMSTRONG, Biphasic creep and stress relaxation of articular cartilage in compression: theory and experiments, J. Biomechanical Eng., 102, 73-84, 1980.
    • (1980) J. Biomechanical Eng , vol.102 , pp. 73-84
    • MOW, V.C.1    KUEI, S.C.2    LAI, W.M.3    ARMSTRONG, C.G.4
  • 10
    • 0030131294 scopus 로고    scopus 로고
    • Hydraulic permeability of agarose gels
    • E.M. JOHNSON, W.M. DEEN, Hydraulic permeability of agarose gels, AIChE Journal, 42, 1220-1224, 1996.
    • (1996) AIChE Journal , vol.42 , pp. 1220-1224
    • JOHNSON, E.M.1    DEEN, W.M.2
  • 11
    • 0037398425 scopus 로고    scopus 로고
    • New insight into deformation-dependent hydraulic permeability of gels and cartilage, and dynamic behavior of agarose gels in confined compression
    • W.Y. GU, H. YAO, C.Y. HUANG, H.S. CHEUNG, New insight into deformation-dependent hydraulic permeability of gels and cartilage, and dynamic behavior of agarose gels in confined compression, J. Biomechanics, 36, 593-598, 2003.
    • (2003) J. Biomechanics , vol.36 , pp. 593-598
    • GU, W.Y.1    YAO, H.2    HUANG, C.Y.3    CHEUNG, H.S.4
  • 12
    • 33847057733 scopus 로고    scopus 로고
    • Inverse analysis of constitutive models: Biological soft tissues
    • F. LEI, A.Z. SZERI, Inverse analysis of constitutive models: Biological soft tissues, J. Biomechanics, 40, 936-940, 2007.
    • (2007) J. Biomechanics , vol.40 , pp. 936-940
    • LEI, F.1    SZERI, A.Z.2
  • 13
    • 33748298917 scopus 로고    scopus 로고
    • A dual optimization method for the material parameter identification of a biphasic poroviscoelastic hydrogel: Potential application to hypercompliant soft tissues
    • J.E. OLBERDING, J.-K.F. SUH, A dual optimization method for the material parameter identification of a biphasic poroviscoelastic hydrogel: Potential application to hypercompliant soft tissues, J. Biomechanics, 39, 2468-2475, 2006.
    • (2006) J. Biomechanics , vol.39 , pp. 2468-2475
    • OLBERDING, J.E.1    SUH, J.-K.F.2
  • 14
    • 0025241673 scopus 로고
    • The nonlinear characteristic of soft gels and hydrated connective tissues in ultrafiltration
    • M.H. HOLMES, V.C. MOW, The nonlinear characteristic of soft gels and hydrated connective tissues in ultrafiltration, J. Biomechanics, 23, 1145-1156, 1990.
    • (1990) J. Biomechanics , vol.23 , pp. 1145-1156
    • HOLMES, M.H.1    MOW, V.C.2
  • 15
    • 33645841647 scopus 로고    scopus 로고
    • Design and analysis of tissue engineering scaffolds that mimic soft tissue mechanical anisotropy
    • T. COURTNEY, M.S. SACKS, J. STANKUS, J. GUAN, W.R. WAGNER, Design and analysis of tissue engineering scaffolds that mimic soft tissue mechanical anisotropy, Biomaterials, 27, 3631-3638, 2006.
    • (2006) Biomaterials , vol.27 , pp. 3631-3638
    • COURTNEY, T.1    SACKS, M.S.2    STANKUS, J.3    GUAN, J.4    WAGNER, W.R.5
  • 16
    • 33745396475 scopus 로고    scopus 로고
    • G.C. ENGELMAYR JR., G.D. PAPWORTH, S.C. WATKINS, J.E. MAYER JR., M.S. SACKS, Guidance of engineered tissue collagen orientation by large-scale scaffold microstructures, J. Biomechanics, 39, 1819-1831, 2006.
    • G.C. ENGELMAYR JR., G.D. PAPWORTH, S.C. WATKINS, J.E. MAYER JR., M.S. SACKS, Guidance of engineered tissue collagen orientation by large-scale scaffold microstructures, J. Biomechanics, 39, 1819-1831, 2006.
  • 17
    • 0037397161 scopus 로고    scopus 로고
    • A model of fracture testing of soft viscoelastic tissues
    • B.E. KOOP, J.L. LEWIS, A model of fracture testing of soft viscoelastic tissues, J. Biomechanics, 36, 605-608, 2003.
    • (2003) J. Biomechanics , vol.36 , pp. 605-608
    • KOOP, B.E.1    LEWIS, J.L.2
  • 18
    • 31044438547 scopus 로고    scopus 로고
    • A stochastic-structurally based three-dimensional finite-strain damage model for fibrous soft tissue
    • J.F. RODRÍGUEZ, F. CACHO, J.A. BEA, M. DOBLARÉ, A stochastic-structurally based three-dimensional finite-strain damage model for fibrous soft tissue, J. Mechanics Physics of Solids, 54, 864-886, 2006.
    • (2006) J. Mechanics Physics of Solids , vol.54 , pp. 864-886
    • RODRÍGUEZ, J.F.1    CACHO, F.2    BEA, J.A.3    DOBLARÉ, M.4
  • 20
    • 0034434740 scopus 로고    scopus 로고
    • A new constitutive framework for arterial wall mechanics and a comparative study of material models
    • G.A. HOLZAPFEL, T.C. GASSER, R.W. OGDEN, A new constitutive framework for arterial wall mechanics and a comparative study of material models, J. Elasticity, 61, 1-48, 2000.
    • (2000) J. Elasticity , vol.61 , pp. 1-48
    • HOLZAPFEL, G.A.1    GASSER, T.C.2    OGDEN, R.W.3
  • 21
    • 34548441226 scopus 로고    scopus 로고
    • A polyconvex hyperelastic model for fiber-reinforced materials in application to soft tissues
    • A.E. EHRET, M. ITSKOV, A polyconvex hyperelastic model for fiber-reinforced materials in application to soft tissues, J. Mater. Sci., 42, 8853-8863, 2007.
    • (2007) J. Mater. Sci , vol.42 , pp. 8853-8863
    • EHRET, A.E.1    ITSKOV, M.2
  • 22
    • 33646409281 scopus 로고    scopus 로고
    • A large-strain finite element formulation for biological tissues with application to mitral valve leaflet tissue mechanics
    • E.J. WEINBERG, M.R. KAAZEMPUR-MOFRAD, A large-strain finite element formulation for biological tissues with application to mitral valve leaflet tissue mechanics, J. Biomechanics, 39, 1557-1561, 2006.
    • (2006) J. Biomechanics , vol.39 , pp. 1557-1561
    • WEINBERG, E.J.1    KAAZEMPUR-MOFRAD, M.R.2
  • 23
    • 30344433482 scopus 로고    scopus 로고
    • Continuous versus discrete (invariant) representations of fibrous structure for modeling non-linear anisotropic soft tissue behavior
    • J.E. BISCHOFF, Continuous versus discrete (invariant) representations of fibrous structure for modeling non-linear anisotropic soft tissue behavior, Int. J. Non-Linear Mech., 41, 167-179, 2006.
    • (2006) Int. J. Non-Linear Mech , vol.41 , pp. 167-179
    • BISCHOFF, J.E.1
  • 25
    • 34249310619 scopus 로고    scopus 로고
    • A rate-insensitive linear viscoelastic model for soft tissues
    • W. ZHANG, H.Y. CHEN, G.S. KASSAB, A rate-insensitive linear viscoelastic model for soft tissues, Biomaterials, 28, 3579-3586, 2007.
    • (2007) Biomaterials , vol.28 , pp. 3579-3586
    • ZHANG, W.1    CHEN, H.Y.2    KASSAB, G.S.3
  • 26
    • 38149039347 scopus 로고    scopus 로고
    • Prediction of arterial failure based on a microstructural bi-layer fiber-matrix model with softening
    • K.Y. VOLOKH, Prediction of arterial failure based on a microstructural bi-layer fiber-matrix model with softening, J. Biomechanics, 41, 447-453, 2008.
    • (2008) J. Biomechanics , vol.41 , pp. 447-453
    • VOLOKH, K.Y.1
  • 27
    • 38149091739 scopus 로고    scopus 로고
    • Transport of neutral solute in articular cartilage: Effect of microstructure anisotropy
    • L. ZHANG, A. Z. SZERI, Transport of neutral solute in articular cartilage: Effect of microstructure anisotropy, J. Biomechanics, 41, 430-437, 2008.
    • (2008) J. Biomechanics , vol.41 , pp. 430-437
    • ZHANG, L.1    SZERI, A.Z.2
  • 28
    • 0036203451 scopus 로고    scopus 로고
    • Mechanical properties of brain tissue in tension
    • K. MILLER, K. CHINZEI, Mechanical properties of brain tissue in tension, J. Biomechanics, 35, 483-490, 2002.
    • (2002) J. Biomechanics , vol.35 , pp. 483-490
    • MILLER, K.1    CHINZEI, K.2
  • 29
    • 1442299847 scopus 로고    scopus 로고
    • A cryogenic holder for tensile testing of soft biological tissues
    • J. LEPETIT, R. FAVIER, A. GRAJALES, P.O. SKJERVOLD, A cryogenic holder for tensile testing of soft biological tissues, J. Biomechanics, 37, 557-562, 2004.
    • (2004) J. Biomechanics , vol.37 , pp. 557-562
    • LEPETIT, J.1    FAVIER, R.2    GRAJALES, A.3    SKJERVOLD, P.O.4
  • 30
    • 0345735673 scopus 로고    scopus 로고
    • Analysis of effects of friction on the deformation behavior of soft tissues in unconfined compression tests
    • J.Z. WU, R.G. DONG, A.W. SCHOPPER, Analysis of effects of friction on the deformation behavior of soft tissues in unconfined compression tests, J. Biomechanics, 37, 147-155, 2004.
    • (2004) J. Biomechanics , vol.37 , pp. 147-155
    • WU, J.Z.1    DONG, R.G.2    SCHOPPER, A.W.3
  • 31
    • 33845660465 scopus 로고    scopus 로고
    • Methodology to determine failure characteristics of planar soft tissues using a dynamic tensile test
    • C. JAQUEMOUD, K. BRUYERE-GARNIER, M. CORET, Methodology to determine failure characteristics of planar soft tissues using a dynamic tensile test, J. Biomechanics, 40, 468-475, 2007.
    • (2007) J. Biomechanics , vol.40 , pp. 468-475
    • JAQUEMOUD, C.1    BRUYERE-GARNIER, K.2    CORET, M.3
  • 32
    • 33847417999 scopus 로고    scopus 로고
    • Investigating full-field deformation of planar soft tissue under simple-shear tests
    • D.-L. GUO, B.-S. CHEN, N.-S. LIOU, Investigating full-field deformation of planar soft tissue under simple-shear tests, J. Biomechanics, 40, 1165-1170, 2007.
    • (2007) J. Biomechanics , vol.40 , pp. 1165-1170
    • GUO, D.-L.1    CHEN, B.-S.2    LIOU, N.-S.3
  • 33
    • 33845222393 scopus 로고    scopus 로고
    • Depth-dependent biomechanical and biochemical properties of fetal, newborn, and tissu e- engineered articular cartilage
    • T.J. KLEIN, M. CHAUDHRY, W.C. BAE, R.L. SAH, Depth-dependent biomechanical and biochemical properties of fetal, newborn, and tissu e- engineered articular cartilage, J. Biomechanics, 40, 182-190, 2007.
    • (2007) J. Biomechanics , vol.40 , pp. 182-190
    • KLEIN, T.J.1    CHAUDHRY, M.2    BAE, W.C.3    SAH, R.L.4
  • 35
    • 40249091286 scopus 로고    scopus 로고
    • A method of calculating physiologically relevant joint reaction forces during forward dynamic simulations of movement from an existing knee model
    • M.J. KOEHLE, M.L. HULL, A method of calculating physiologically relevant joint reaction forces during forward dynamic simulations of movement from an existing knee model, J. Biomechanics, 41, 1143-1146, 2008.
    • (2008) J. Biomechanics , vol.41 , pp. 1143-1146
    • KOEHLE, M.J.1    HULL, M.L.2
  • 36
    • 7244262065 scopus 로고    scopus 로고
    • Method of testing very soft biological tissues in compression
    • K. MILLER, Method of testing very soft biological tissues in compression, J. Biomechanics, 38, 153-158, 2005.
    • (2005) J. Biomechanics , vol.38 , pp. 153-158
    • MILLER, K.1
  • 37
    • 0347527610 scopus 로고    scopus 로고
    • Springer, Berlin Heidelberg, New York
    • J. BETTEN, Creep Mechanics, Springer, Berlin Heidelberg, New York 2005.
    • (2005) Creep Mechanics
    • BETTEN, J.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.