Biomedical Engineering Reference
In-Depth Information
References
1. Discher DE, Janmey P, Wang YL (2005) Tissue cells feel and respond to the stiffness of their
substrate. Science 310(5751):1139-1143
2. Engler AJ, Griffin MA, Sen S, Bonnemann CG, Sweeney HL, Discher DE (2004) Myotubes
differentiate optimally on substrates with tissue-like stiffness: pathological implications for
soft or stiff microenvironments. J Cell Biol 166(6):877-887
3. Bacabac RG, Mizuno D, Schmidt CF, MacKintosh FC, Van Loon JJ, Klein-Nulend J, Smit TH
(2008) Round versus flat: bone cell morphology, elasticity, and mechanosensing. J Biomech
41(7):1590-1598
4. Nijenhuis N, Mizuno D, Schmidt CF, Vink H, Spaan JA (2008) Microrheology of hyaluronan
solutions: implications for the endothelial glycocalyx. Biomacromolecules 9(9):2390-2398
5. Burger EH, Klein-Nulend J (1999) Responses of bone cells to biomechanical forces in vitro.
Adv Dent Res 13:93-98
6. Bacabac RG, Smit TH, Mullender MG, Dijcks SJ, Van Loon JJ, Klein-Nulend J (2004) Nitric
oxide production by bone cells is fluid shear stress rate dependent. Biochem Biophys Res
Commun 315(4):823-829
7. Bacabac RG, Smit TH, Van Loon JJ, Doulabi BZ, Helder M, Klein-Nulend J (2006) Bone cell
responses to high-frequency vibration stress: does the nucleus oscillate within the cytoplasm?
FASEB J 20(7):858-864
8. Janmey PA, Weitz DA (2004) Dealing with mechanics: mechanisms of force transduction in
cells. Trends Biochem Sci 29(7):364-370
9. Endlich N, Otey CA, Kriz W, Endlich K (2007) Movement of stress fibers away from focal
adhesions identifies focal adhesions as sites of stress fiber assembly in stationary cells. Cell
Motil Cytoskelet 64(12):966-976
10. Gittes F, MacKintosh FC (1998) Dynamic shear modulus of a semiflexible polymer network.
Phys Rev E 58(2):R1241
11. Janmey PA, Hvidt S, Kas J, Lerche D, Maggs A, Sackmann E, Schliwa M, Stossel TP (1994)
The mechanical properties of actin gels. Elastic modulus and filament motions. J Biol Chem
269(51):32503-32513
12. Storm C, Pastore JJ, MacKintosh FC, Lubensky TC, Janmey PA (2005) Nonlinear elasticity
in biological gels. Nature 435(7039):191-194
13. Bendix PM, Koenderink GH, Cuvelier D, Dogic Z, Koeleman BN, Brieher WM, Field CM,
Mahadevan L, Weitz DA (2008) A quantitative analysis of contractility in active cytoskeletal
protein networks. Biophys J 94(8):3126-3136
14. Piechoka IK, Bacabac RG, Potters M, MacKintosh FC, Koenderink GH (2010) Structural
hierarchy governs fibrin gel mechanics. Biophys J 98:2281-2289
15. Alberts B, Johnson A, Lewis J, Raff M, Roberts K, Walter P (2002) Molecular biology of the
cell. Garland Science, New York
16. Fung YC (1988) Microrheology and constitutive equation of soft tissue. Biorheology 25(1-
2):261-270
17. Smith D, Ziebert F, Humphrey D, Duggan C, Steinbeck M, Zimmermann W, Kas J (2007)
Molecular motor-induced instabilities and cross linkers determine biopolymer organization.
Biophys J 93(12):4445-4452
18. Bernido CC, Carpio-Bernido MV (2005) Overwinding in a stochastic model of an extended
polymer. Phys Lett A 369:1-4
19. Bernido CC, Carpio-Bernido MV, Bornales JB (2005) Overwinding in a stochastic model of
an extended polymer. Phys Lett A 339:232-236
20. Crocker JC, Hoffman BD (2007) Multiple-particle tracking and two-point microrheology in
cells. Methods Cell Biol 83:141-178
21. Levine AJ, Lubensky TC (2000) One- and two-particle microrheology. Phys Rev Lett
85(8):1774-1777
22. Levine AJ, Lubensky TC (2001) Response function of a sphere in a viscoelastic two-fluid
medium. Phys Rev E, Stat Nonlinear Soft Matter Phys 63(4 Pt 1):041510
Search WWH ::




Custom Search