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Volumn 88, Issue 2, 2005, Pages 765-777

Thin bio-artificial tissues in plane stress: The relationship between cell and tissue strain, and an improved constitutive model

Author keywords

[No Author keywords available]

Indexed keywords

ARTICLE; BIOARTIFICIAL ORGAN; BIOARTIFICIAL TISSUE; CELL; EXPERIMENT; MECHANICS; RIGIDITY; STATISTICAL MODEL; STRESS; STRESS STRAIN RELATIONSHIP; STRETCHING; TISSUE; WEIGHT BEARING; ANIMAL; ARTIFICIAL MEMBRANE; BIOLOGICAL MODEL; CELL CULTURE; CELL FUNCTION; COMPARATIVE STUDY; COMPUTER SIMULATION; ELASTICITY; EVALUATION; EXTRACELLULAR MATRIX; HUMAN; MECHANICAL STRESS; MECHANOTRANSDUCTION; METHODOLOGY; PHYSIOLOGY; TENSILE STRENGTH; TISSUE ENGINEERING; VALIDATION STUDY;

EID: 21244468212     PISSN: 00063495     EISSN: None     Source Type: Journal    
DOI: 10.1529/biophysj.104.040808     Document Type: Article
Times cited : (54)

References (41)
  • 1
    • 0029559838 scopus 로고
    • Changes in proteoglycan synthesis of chondrocytes in articular cartilage are associated with the time-dependent changes in their mechanical environment
    • Bachrach, N. M., W. B. Valhmu, E. Stazzone, A. Ratcliffe, W. M. Lai, and V. C. Mow. 1995. Changes in proteoglycan synthesis of chondrocytes in articular cartilage are associated with the time-dependent changes in their mechanical environment. J. Biomech. 28:1561-1569.
    • (1995) J. Biomech. , vol.28 , pp. 1561-1569
    • Bachrach, N.M.1    Valhmu, W.B.2    Stazzone, E.3    Ratcliffe, A.4    Lai, W.M.5    Mow, V.C.6
  • 2
    • 0034210532 scopus 로고    scopus 로고
    • The micromechanical environment of intervertebral disc cells: Effect of matrix anisotropy and cell geometry predicted by a linear model
    • Baer, A. E., and L. A. Setton. 2000. The micromechanical environment of intervertebral disc cells: Effect of matrix anisotropy and cell geometry predicted by a linear model. J. Biomech. Eng. 122:245-251.
    • (2000) J. Biomech. Eng. , vol.122 , pp. 245-251
    • Baer, A.E.1    Setton, L.A.2
  • 3
    • 0031660703 scopus 로고    scopus 로고
    • Local measurements of viscoelastic parameters of adherent cell surfaces by magnetic bead microrheometry
    • Bausch, A. R., F. Ziemann, A. A. Boulbitch, K. Jacobson, and E. Sackmann. 1998. Local measurements of viscoelastic parameters of adherent cell surfaces by magnetic bead microrheometry. Biophys. J. 75:2038-2049.
    • (1998) Biophys. J. , vol.75 , pp. 2038-2049
    • Bausch, A.R.1    Ziemann, F.2    Boulbitch, A.A.3    Jacobson, K.4    Sackmann, E.5
  • 4
    • 0344915170 scopus 로고    scopus 로고
    • Measurement of local viscoelasticity and forces in living cells by magnetic tweezers
    • Bausch, A. R., W. Moller, and E. Sackmann. 1999. Measurement of local viscoelasticity and forces in living cells by magnetic tweezers. Biophys. J. 76:573-579.
    • (1999) Biophys. J. , vol.76 , pp. 573-579
    • Bausch, A.R.1    Moller, W.2    Sackmann, E.3
  • 6
    • 8344236638 scopus 로고
    • On the elastic moduli of some heterogeneous materials
    • Budiansky, B. 1965. On the elastic moduli of some heterogeneous materials. J. Mech. Phys. Solids. 13:223-227.
    • (1965) J. Mech. Phys. Solids , vol.13 , pp. 223-227
    • Budiansky, B.1
  • 7
    • 0029357789 scopus 로고
    • Toughening of ceramics by short aligned fibers
    • Budiansky, B., and Y. L. Cui. 1995. Toughening of ceramics by short aligned fibers. Mech. Mater. 21:139-146.
    • (1995) Mech. Mater. , vol.21 , pp. 139-146
    • Budiansky, B.1    Cui, Y.L.2
  • 9
    • 0000929676 scopus 로고
    • The determination of the elastic field outside an ellipsoidal inclusion, and related problems
    • Eshelby, J. D. 1957. The determination of the elastic field outside an ellipsoidal inclusion, and related problems. Proc. Roy. Soc. A. 241:376-396.
    • (1957) Proc. Roy. Soc. A , vol.241 , pp. 376-396
    • Eshelby, J.D.1
  • 10
    • 0001085508 scopus 로고
    • The elastic field outside an ellipsoidal inclusion
    • Eshelby, J. D. 1959. The elastic field outside an ellipsoidal inclusion. Proc. Roy. Soc. A. 252:561-569.
    • (1959) Proc. Roy. Soc. A , vol.252 , pp. 561-569
    • Eshelby, J.D.1
  • 12
    • 0020115434 scopus 로고
    • A probabilistic theory of the strength of short-fibre composites with variable fibre length and orientation
    • Fukuda, H., and T. W. Chou. 1982. A probabilistic theory of the strength of short-fibre composites with variable fibre length and orientation. J. Mater. Sci. 17:1003-1007.
    • (1982) J. Mater. Sci. , vol.17 , pp. 1003-1007
    • Fukuda, H.1    Chou, T.W.2
  • 13
    • 0016081182 scopus 로고
    • On Young's modulus of short fiber composites
    • Fukuda, H., and K. Kawata. 1974. On Young's modulus of short fiber composites. Fibre Sci. Technol. 7:207-222.
    • (1974) Fibre Sci. Technol. , vol.7 , pp. 207-222
    • Fukuda, H.1    Kawata, K.2
  • 15
    • 0032990973 scopus 로고    scopus 로고
    • The deformation behavior and mechanical properties of chondrocytes in articular cartilage
    • Guilak, F., W. R. Jones, H. P. Ting-Beall, and G. M. Lee. 1999. The deformation behavior and mechanical properties of chondrocytes in articular cartilage. Osteoarthritis Cartilage. 7:59-70.
    • (1999) Osteoarthritis Cartilage , vol.7 , pp. 59-70
    • Guilak, F.1    Jones, W.R.2    Ting-Beall, H.P.3    Lee, G.M.4
  • 16
    • 0033811124 scopus 로고    scopus 로고
    • The mechanical environment of the chondrocyte: A biphasic finite element model of cell-matrix interactions in articular cartilage
    • Guilak, F., and V. C. Mow. 2000. The mechanical environment of the chondrocyte: a biphasic finite element model of cell-matrix interactions in articular cartilage. J. Biomech. 33:1663-1673.
    • (2000) J. Biomech. , vol.33 , pp. 1663-1673
    • Guilak, F.1    Mow, V.C.2
  • 19
    • 11644304284 scopus 로고
    • A self-consistent mechanics of composite materials
    • Hill, R. 1965. A self-consistent mechanics of composite materials. Mech. Phys. Solids. 13:213-222.
    • (1965) Mech. Phys. Solids , vol.13 , pp. 213-222
    • Hill, R.1
  • 20
    • 0031193870 scopus 로고    scopus 로고
    • Investigating the cytoskeleton of chicken cardiocytes with the atomic force microscope
    • Hofmann, U. G., C. Rotsch, W. J. Parak, and M. Radmacher. 1997. Investigating the cytoskeleton of chicken cardiocytes with the atomic force microscope. J. Struct. Biol. 119:84-91.
    • (1997) J. Struct. Biol. , vol.119 , pp. 84-91
    • Hofmann, U.G.1    Rotsch, C.2    Parak, W.J.3    Radmacher, M.4
  • 21
    • 0001569763 scopus 로고
    • The structure of paper: The statistical geometry of an ideal two-dimensional fiber network
    • Kallmes, O., and H. Corte. 1960. The structure of paper: the statistical geometry of an ideal two-dimensional fiber network. Tappi. 43:737-752.
    • (1960) Tappi , vol.43 , pp. 737-752
    • Kallmes, O.1    Corte, H.2
  • 22
    • 0034214830 scopus 로고    scopus 로고
    • Scanning probe-based frequency-dependent microrheology of polymer gels and biological cells
    • Mahaffy, R. E., C. K. Shih, F. C. MacKintosh, and J. Käs. 2000. Scanning probe-based frequency-dependent microrheology of polymer gels and biological cells. Phys. Rev. Lett. 85:880-883.
    • (2000) Phys. Rev. Lett. , vol.85 , pp. 880-883
    • Mahaffy, R.E.1    Shih, C.K.2    MacKintosh, F.C.3    Käs, J.4
  • 24
    • 0002869624 scopus 로고    scopus 로고
    • Structure and function of articular cartilage and meniscus
    • V. C. Mow and W. C. Haves, editors. Lippicott-Raven Publishers, Philadelphia, PA
    • Mow, V. C., and A. Ratcliffe. 1997. Structure and function of articular cartilage and meniscus. In Basic Orthopaedic Biomechanics, 2nd ed. V. C. Mow and W. C. Haves, editors. Lippicott-Raven Publishers, Philadelphia, PA.
    • (1997) Basic Orthopaedic Biomechanics, 2nd Ed.
    • Mow, V.C.1    Ratcliffe, A.2
  • 26
    • 0029394762 scopus 로고
    • Physical response of collagen gels to tensile strain
    • Ozerdem, B., and A. Tozeren. 1995. Physical response of collagen gels to tensile strain. J. Biomech. Eng. 117:397-401.
    • (1995) J. Biomech. Eng. , vol.117 , pp. 397-401
    • Ozerdem, B.1    Tozeren, A.2
  • 27
    • 0023873479 scopus 로고
    • The molecular and fibrillar structure of collagen and its relationship to the mechanical properties of connective tissue
    • Parry, D. A. D. 1988. The molecular and fibrillar structure of collagen and its relationship to the mechanical properties of connective tissue. Biophys. Chem. 29:195-209.
    • (1988) Biophys. Chem. , vol.29 , pp. 195-209
    • Parry, D.A.D.1
  • 28
    • 0001326111 scopus 로고
    • Dependence of locally measured cellular deformability on position on the cell, temperature, and cytochalasin B
    • Petersen, N. O., W. B. McConnaughey, and E. L. Elson. 1982. Dependence of locally measured cellular deformability on position on the cell, temperature, and cytochalasin B. Proc. Natl. Acad. Sci. USA. 79:5327-5331.
    • (1982) Proc. Natl. Acad. Sci. USA , vol.79 , pp. 5327-5331
    • Petersen, N.O.1    McConnaughey, W.B.2    Elson, E.L.3
  • 29
    • 0031103133 scopus 로고    scopus 로고
    • Effects of static axial strain on the tensile properties and failure mechanisms of self-assembled collagen fibers
    • Pins, G. D., E. K. Huang, D. L. Christiansen, and F. H. Silver. 1997. Effects of static axial strain on the tensile properties and failure mechanisms of self-assembled collagen fibers. J. Appl. Polym. Sci. 63:1429-1440.
    • (1997) J. Appl. Polym. Sci. , vol.63 , pp. 1429-1440
    • Pins, G.D.1    Huang, E.K.2    Christiansen, D.L.3    Silver, F.H.4
  • 30
    • 22144496198 scopus 로고
    • On the formulation of constitutive equations for living soft tissues
    • Prager, W. 1969. On the formulation of constitutive equations for living soft tissues. Q. Appl. Math. 27:128-132.
    • (1969) Q. Appl. Math. , vol.27 , pp. 128-132
    • Prager, W.1
  • 31
    • 0346965441 scopus 로고    scopus 로고
    • Incremental mechanics of collagen gels: New experiments and a new viscoelastic model
    • Pryse, K. M., A. Nekouzadeh, G. M. Genin, E. L. Elson, and G. I. Zahalak. 2003. Incremental mechanics of collagen gels: new experiments and a new viscoelastic model. Ann. Biomed. Eng. 31:1287-1296.
    • (2003) Ann. Biomed. Eng. , vol.31 , pp. 1287-1296
    • Pryse, K.M.1    Nekouzadeh, A.2    Genin, G.M.3    Elson, E.L.4    Zahalak, G.I.5
  • 32
    • 0036102097 scopus 로고    scopus 로고
    • Tensile mechanical properties of three-dimensional type i collagen extracellular matrices with varied microstructure
    • Roeder, B. A., K. Kokini, J. E. Sturgis, J. P. Robinson, and S. L. Voytik-Harbin. 2002. Tensile mechanical properties of three-dimensional type i collagen extracellular matrices with varied microstructure. J. Biomech. Eng. 124:214-222.
    • (2002) J. Biomech. Eng. , vol.124 , pp. 214-222
    • Roeder, B.A.1    Kokini, K.2    Sturgis, J.E.3    Robinson, J.P.4    Voytik-Harbin, S.L.5
  • 34
    • 0023419150 scopus 로고
    • An energy method for calculating the stiffness of aligned short-fiber composites
    • Steif, P. S., and S. F. Hoysan. 1987. An energy method for calculating the stiffness of aligned short-fiber composites. Mech. Mater. 6:197-210.
    • (1987) Mech. Mater. , vol.6 , pp. 197-210
    • Steif, P.S.1    Hoysan, S.F.2
  • 36
    • 0033117539 scopus 로고    scopus 로고
    • Stiffness prediction for unidirectional short-fiber composites: Review and evaluation
    • Tucker, C. L., and E. Liang. 1999. Stiffness prediction for unidirectional short-fiber composites: review and evaluation. Comp. Sci. Tech. 59:655-671.
    • (1999) Comp. Sci. Tech. , vol.59 , pp. 655-671
    • Tucker, C.L.1    Liang, E.2
  • 37
    • 0034074432 scopus 로고    scopus 로고
    • Mechanics of living cells measured by laser tracking microrheology
    • Yamada, S., D. Wirtz, and S. C. Kuo. 2000. Mechanics of living cells measured by laser tracking microrheology. Biophys. J. 78:1736-1747.
    • (2000) Biophys. J. , vol.78 , pp. 1736-1747
    • Yamada, S.1    Wirtz, D.2    Kuo, S.C.3
  • 38
    • 0033729465 scopus 로고    scopus 로고
    • Cell mechanics studied by a reconstituted model tissue
    • Wakatsuki, T., M. S. Kolodney, G. I. Zahalak, and E. L. Elson. 2000. Cell mechanics studied by a reconstituted model tissue. Bioph. J. 79:2353-2368.
    • (2000) Bioph. J. , vol.79 , pp. 2353-2368
    • Wakatsuki, T.1    Kolodney, M.S.2    Zahalak, G.I.3    Elson, E.L.4
  • 39
    • 0034152847 scopus 로고    scopus 로고
    • Finite element simulation of location- and time-dependent mechanical behavior of chondrocytes in unconfined compression tests
    • Wu, J. Z., and W. Herzog. 2000. Finite element simulation of location- and time-dependent mechanical behavior of chondrocytes in unconfined compression tests. Ann. Biomed. Eng. 28:318-330.
    • (2000) Ann. Biomed. Eng. , vol.28 , pp. 318-330
    • Wu, J.Z.1    Herzog, W.2
  • 40
    • 0032923007 scopus 로고    scopus 로고
    • Modelling of location- and time-dependent deformation of chondrocytes during cartilage loading
    • Wu, J. Z., W. Herzog, and M. Epstein. 1999. Modelling of location- and time-dependent deformation of chondrocytes during cartilage loading. J. Biomech. 32:563-572.
    • (1999) J. Biomech. , vol.32 , pp. 563-572
    • Wu, J.Z.1    Herzog, W.2    Epstein, M.3
  • 41
    • 0033729708 scopus 로고    scopus 로고
    • A cell-based constitutive relation for bio-artificial tissues
    • Zahalak, G. I., J. E. Wagenseil, T. Wakatsuki, and L. E. Elson. 2000. A Cell-based constitutive relation for bio-artificial tissues. Biophys. J. 79:2369-2381.
    • (2000) Biophys. J. , vol.79 , pp. 2369-2381
    • Zahalak, G.I.1    Wagenseil, J.E.2    Wakatsuki, T.3    Elson, L.E.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.