Biomedical Engineering Reference
In-Depth Information
converging bifurcation. ECCOMAS thematic conference on computational vision and medical
image processing, Olh˜o, Portugal, pp 209-211
36. Lima R, Ishikawa T, Imai Y, Yamaguchi T (2012) Blood flow behavior in microchannels:
advances and future trends. In: Dias et al (eds) Single and two-Phase flows on chemical and
biomedical engineering, Bentham Science Publishers, Springer (in press)
37. Saadatmand M, Ishikawa T, Matsuki N, Abdekhodaie MJ, Imai Y, Ueno H, Yamaguchi T
(2011) Fluid particle diffusion through high-hematocrit blood flow within a capillary tube.
J Biomech 44:170-175
38. Meijering E, Smal I, Danuser G (2006) Tracking in molecular bioimaging. IEEE Signal
Process Mag 23:46-53
39. Meinhart C, Wereley S, Santiago J (1999) PIV measurements of a microchannel flow. Exp
Fluids 27:414-419
40. Nakano A, Sugii Y, Minamiyama M, Niimi H (2003) Measurement of red cell velocity in
microvessels using particle image velocimetry (PIV). Clin Hemorheol Microcirc 29:445-455
41. Parthasarathi A, Japee S, Pittman R (1999) Determination of red blood cell velocity by video
shuttering and image analysis. Ann Biomed Eng 27:313-325
42. Pries A, Secomb T, Gessner T, Sperandio M, Gross J, Gaehtgens P (1994) Resistance to blood
flow in microvessels in vivo. Circ Res 75:904-915
43. Tangelder G, Slaaf D, Muijtjens M, Arts T, Egbrink M, Reneman R (1986) Velocity profiles of
blood platelets and red blood cells flowing in arteriols of rabbit mesentery. Circ Res
59:505-514
44. Sbalzarini IF, Koumoutsakos P (2005) Feature point tracking and trajectory analysis for video
imaging in cell biology. J Struct Biol 151(2):182-195
45. Santiago J, Wereley S, Meinhart C, Beebe D, Adrian R (1998) A particle image velocimetry
system for microfluidics. Exp Fluids 25:316-319
46. Sugii Y, Nishio S, Okamoto K (2002) In vivo PIV measurement of red blood cell velocity field
in microvessels considering mesentery motion. Physiol Meas 23:403-416
47. Sugii Y, Okuda R, Okamoto K, Madarame H (2005) Velocity measurement of both red blood
cells and plasma of in vitro blood flow using high-speed micro PIV technique. Meas Sci
Technol 16:1126-1130
48. Suzuki Y, Tateishi N, Soutani M, Maeda N (1996) Deformation of erythrocytes in
microvessels and glass capillaries: effects of erythrocyte deformability. Microcirculation
3:49-57
49. Uijttewaal W, Nijhof E, Heethaar R (1994) Lateral migration of blood cells and microspheres
in two-dimensional Poiseuille flow: a laser Doppler study. J Biomech 27:35-42
50. Vennemann P, Kiger K, Lindken R, Groenendijk B, Stekelenburg-de Vos S, Hagen T, Ursem
N, Poelmann RE, Westerweel J, Hierk B (2006) In vivo micro particle image velocimetry
measurements of blood-plasma in the embryonic avian heart. J Biomech 39:1191-1200
51. Wereley ST, Meinhart CD (2010) Recent advances in micro-particle image velocimetry. Annu
Rev Fluid Mech 42:557-576
52. Yaginuma T, Oliveira MSN, Lima R, Dias R, Ishikawa T, Imai Y, Yamaguchi T (2012) Flow
visualization of trace particles and red blood cells in a microchannel with a diverging and
converging bifurcation, ECCOMAS thematic conference on computational vision and medical
image processing, Olh ˜ o, Portugal, pp 209-211
53. Yaginuma T, Oliveira MSN, Lima R, Ishikawa T, Yamaguchi T (2011) Red blood cell
deformation in flows through a PDMS hyperbolic microchannel. In: Proceedings of
TechConnect World 2011—Microtech Conference and Expo 2011, Boston, MA, USA, 2, 505
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