Biomedical Engineering Reference
In-Depth Information
15. Freeman B (1985) The motion of rigid ellipsoidal particcles in slow flows. Tecfonophysics
113: 163-183.
16. Frenkel D, Smit B (2001). Understanding molecular simulation: from algorithms to applica-
tions, Access Online via Elsevier.
17. Gladden JK, Dole M (1953) Diffusion in supersaturated solution II: glucose solutions. J. Am.
Chem. Soc. 75: 3900-3904.
18. Glowinski R, Pan TW, Hesla TI, Joseph DD, Periaux J (2001) A fictitious domain approach
to the direct numerical simulation of incompressible viscous flow past moving rigid bodies:
application to particulate flow. J. Comput. Physics 169: 363-426.
19. Goano CD, Minev PD, Nandakumar K (2003) A fictitious domain/finite element method for
particulate flows. J. Comput. Physics 192: 105-123.
20. Grattoni A, Shen H, Fine D, Ziemys A, Gill J, Hudson L, Hosali S, Goodall R, Liu X, Ferrari
M (2011) Nanochannel Technology for Constant Delivery of Chemotherapeutics: Beyond
Metronomic Administration. Pharm. Res. 28(2): 292-300.
21. Griess GA, Guiseley KB, Serwer P (1993) The relationship of agarose gel structure to the
sieving of spheres during agarose gel electrophoresis. Biophys. J. 65(1): 138-148.
22. H. Cao ZY, J. Wang, J. Tegenfeldt, R. Austin, E. Chen, W. Wu, S. Chou (2002) Fabrication of
10 nm enclosed nanofluidic channels. Appl. Phys. Lett. 81.
23. H. Gardeniers AB (2004) Micro-and nanofluidic devices for environmental and biomedical
applications. Int. J. Envir. Analyt. Chemistry 84(11): 809-819.
24. Han J, Fu J, Schoch R (2008) Molecular sieving using nanofilters: past, present and future. Lab
Chip 8(1): 23.
25. Hashin Z (1968) Assessment of the self consistent scheme approximation: conductivity of
particulate composites. J. Composite Materials 2: 284-300.
26. Hosoda M, Sakai K, Takagi K (1998) Measurement of anisotropic Brownian motion near an
interface by evanescent light-scattering spectroscopy. Phys. Rev. E 58(5): 6275-6280.
27. Hu HH, Joseph DD, Crochet MJ (1992) Direct simulation of fluid particle motions. Theoret.
Comput. Fluid Dynamics 3: 285-306.
28. Hu HH, Patankar NA, Zhu MY (2001) Direct numerical simulations of fluid-solid systems
using the arbitrary Lagrangian-Eulerian technique. J. Comput. Physics 169: 427-462.
29. Isailovic V (2012). Numerical modeling of motion of cells, micro- and nano- particles in blood
vessels. Information Tchnology. Belgrade, Metropolitan University. Ph. D.
30. Israelachvili J, Wennerström H (1996) Role of hydration and water structure in biological and
colloidal interactions. Nature 379: 219-225.
31. Jayageeth C, Sharma VI, Singh A (2009) Dynamics of short fiber suspensions in bounded shear
flow. Int. J. Multiphase Flow 35: 261-269.
32. Jorgensen WL, al. e (1983) Comparison of simple potential functions for simulating liquid
water. J. Chem. Physics 79(2): 926-935.
33. Junping W, Maitani Y, Takayama K, Nagai T (2000) In vivo evaluation of doxorubicin carried
with long circulating and remote loading proliposome. Int. J. Pharm. 203(1): 61-69.
34. Kojic M, Bathe KJ (2005). Inelastic Analysis of Solids and Structures. Heildelberg - Berlin,
Springer-Verlag.
35. Kojic M, Filipovic N, Slavkovic R, Zivkovic M, Grujovic N (1998, 2009). PAK-FS - Finite
Element Program for Fluid Flow and Fluid-Solid Interaction Kragujevac, Serbia, University of
Kragujevac and R&D Center for Bioengineering, Kragujevac, Serbia.
36. Kojic M, Filipovic N, Stojanovic B, Kojic N (2008). Computer Modeling in Bioengineering -
Theoretical Background, Examples and Software. Chichester, England, John Wiley and Sons.
37. KojicM, Isailovic V, Filipovic N, Kojic N, Savovic S, Petrovic D, Ziemys A, Ferrari M(2013) A
numerical study of motion of circular and elliptical micro- and nano-particles inmicrochannels.
Microfluidcs and Nanofluidics (under review).
38. Kojic M, Milosevic M, Kojic N, Ferrari M, Ziemys A (2011) On diffusion in nanospace. J.
Serbian Soc. Comp. Mechanics 5(1): 84-109.
39. Kojic M, Milosevic M, Kojic N, Kim K, Ferrari M, Ziemys A (2013) A multiscale MD-FE
model of diffusion in composite media with internal surface interaction based on numerical
homogenization procedure. Comp. Meth. Appl. Mech. Engrg. (under review).
Search WWH ::




Custom Search