-
1
-
-
71849086982
-
Microconfined flow behavior of red blood cells in vitro
-
10.1016/j.crhy.2009.10.002
-
Guido S. Tomaiuolo G. Microconfined flow behavior of red blood cells in vitro. C. R. Phys. 2009, 10:751. 10.1016/j.crhy.2009.10.002
-
(2009)
C. R. Phys.
, vol.10
, pp. 751
-
-
Guido, S.1
Tomaiuolo, G.2
-
2
-
-
0030271188
-
Biophysical aspects of blood flow in the microvasculature
-
Pries A.R. Secomb T.W. Gaehtgens P. Biophysical aspects of blood flow in the microvasculature. Cardiovasc. Res. 1996, 32:654.
-
(1996)
Cardiovasc. Res.
, vol.32
, pp. 654
-
-
Pries, A.R.1
Secomb, T.W.2
Gaehtgens, P.3
-
3
-
-
14544268968
-
Microcirculation and hemorheology
-
10.1146/annurev.fluid.37.042604.133933
-
Popel A.S. Johnson P.C. Microcirculation and hemorheology. Annu. Rev. Fluid Mech. 2005, 37:43. 10.1146/annurev.fluid.37.042604.133933
-
(2005)
Annu. Rev. Fluid Mech.
, vol.37
, pp. 43
-
-
Popel, A.S.1
Johnson, P.C.2
-
4
-
-
33749132791
-
Mechanical response of human red blood cells in health and disease: Some structure-property-function relationships
-
10.1557/jmr.2006.0260
-
Suresh S. Mechanical response of human red blood cells in health and disease: Some structure-property-function relationships. J. Mater. Res. 2006, 21:1871. 10.1557/jmr.2006.0260
-
(2006)
J. Mater. Res.
, vol.21
, pp. 1871
-
-
Suresh, S.1
-
5
-
-
23844533295
-
Blood-on-a-chip
-
10.1146/annurev.bioeng.7.011205.135108
-
Toner M. Irimia D. Blood-on-a-chip. Annu. Rev. Biomed. Eng. 2005, 7:77. 10.1146/annurev.bioeng.7.011205.135108
-
(2005)
Annu. Rev. Biomed. Eng.
, vol.7
, pp. 77
-
-
Toner, M.1
Irimia, D.2
-
6
-
-
79952164231
-
The sensing of poorly deformable red blood cells by the human spleen can be mimicked in vitro
-
10.1182/blood-2010-10-312801
-
Deplaine G. Safeukui I. Jeddi F. Lacoste F. Brousse V. Perrot S. Biligui S. Guillotte M. Guitton C. Dokmak S. Aussilhou B. Sauvanet A. Hatem D.C. Paye F. Thellier M. Mazier D. Milon G. Mohandas N. Mercereau-Puijalon O. David P.H. Buffet P.A. The sensing of poorly deformable red blood cells by the human spleen can be mimicked in vitro. Blood 2011, 117:e88. 10.1182/blood-2010-10-312801
-
(2011)
Blood
, vol.117
-
-
Deplaine, G.1
Safeukui, I.2
Jeddi, F.3
Lacoste, F.4
Brousse, V.5
Perrot, S.6
Biligui, S.7
Guillotte, M.8
Guitton, C.9
Dokmak, S.10
Aussilhou, B.11
Sauvanet, A.12
Hatem, D.C.13
Paye, F.14
Thellier, M.15
Mazier, D.16
Milon, G.17
Mohandas, N.18
Mercereau-Puijalon, O.19
David, P.H.20
Buffet, P.A.21
more..
-
7
-
-
23444437972
-
Structure and function of the spleen
-
10.1038/nri1669
-
Mebius R.E. Kraal G. Structure and function of the spleen. Nat. Rev. Immun. 2005, 5:606. 10.1038/nri1669
-
(2005)
Nat. Rev. Immun.
, vol.5
, pp. 606
-
-
Mebius, R.E.1
Kraal, G.2
-
8
-
-
0015605437
-
The role of the sinus wall in the passage of erythrocytes through the spleen
-
Chen L.-T. Weiss L. The role of the sinus wall in the passage of erythrocytes through the spleen. Blood 1973, 41:529.
-
(1973)
Blood
, vol.41
, pp. 529
-
-
Chen, L.-T.1
Weiss, L.2
-
9
-
-
0016221291
-
A scanning electron microscopic study of the spleen
-
Weiss L. A scanning electron microscopic study of the spleen. Blood 1974, 43:665.
-
(1974)
Blood
, vol.43
, pp. 665
-
-
Weiss, L.1
-
11
-
-
0026120095
-
Microcirculatory pathways and blood flow in spleen: New insights from washout kinetics, corrosion casts, and quantitative intravital videomicroscopy
-
Groom A.C. Schmidt E.E. MacDonald I.C. Microcirculatory pathways and blood flow in spleen: New insights from washout kinetics, corrosion casts, and quantitative intravital videomicroscopy. Scanning Microsc. 1991, 5:159.
-
(1991)
Scanning Microsc.
, vol.5
, pp. 159
-
-
Groom, A.C.1
Schmidt, E.E.2
MacDonald, I.C.3
-
13
-
-
77957229608
-
Molecular biosensing mechanisms in the spleen for the removal of aged and damaged red cells from the blood circulation
-
10.3390/s100807099
-
Sugawara Y. Hayashi Y. Shigemasa Y. Abe Y. Ohgushi I. Ueno E. Shimamoto F. Molecular biosensing mechanisms in the spleen for the removal of aged and damaged red cells from the blood circulation. Sensors 2010, 10:7099. 10.3390/s100807099
-
(2010)
Sensors
, vol.10
, pp. 7099
-
-
Sugawara, Y.1
Hayashi, Y.2
Shigemasa, Y.3
Abe, Y.4
Ohgushi, I.5
Ueno, E.6
Shimamoto, F.7
-
14
-
-
0015578346
-
An ultrastructural study of the red pulp of the spleen in malaria
-
Schnitzer B. Sodeman T.M. Mead M.L. Contacos P.G. An ultrastructural study of the red pulp of the spleen in malaria. Blood 1973, 41:207.
-
(1973)
Blood
, vol.41
, pp. 207
-
-
Schnitzer, B.1
Sodeman, T.M.2
Mead, M.L.3
Contacos, P.G.4
-
15
-
-
17844372789
-
Connections between single-cell biomechanics and human disease states: Gastrointestinal cancer and malaria
-
10.1016/j.actbio.2004.09.001
-
Suresh S. Spatz J. Mills J.P. Micoulet A. Dao M. Lim C.T. Beil M. Seufferlein T. Connections between single-cell biomechanics and human disease states: Gastrointestinal cancer and malaria. Acta Biomater. 2005, 1:15. 10.1016/j.actbio.2004.09.001
-
(2005)
Acta Biomater.
, vol.1
, pp. 15
-
-
Suresh, S.1
Spatz, J.2
Mills, J.P.3
Micoulet, A.4
Dao, M.5
Lim, C.T.6
Beil, M.7
Seufferlein, T.8
-
16
-
-
0014837699
-
The importance of erythrocyte deformability
-
10.1016/S0002-9343(70)80069-9
-
Weed R.I. The importance of erythrocyte deformability. Am. J. Med. 1970, 49:147. 10.1016/S0002-9343(70)80069-9
-
(1970)
Am. J. Med.
, vol.49
, pp. 147
-
-
Weed, R.I.1
-
17
-
-
79959298077
-
The life span of the human red blood cell
-
Shemin D. Rittenberg D. The life span of the human red blood cell. J. Biol. Chem. 1946, 116:627.
-
(1946)
J. Biol. Chem.
, vol.116
, pp. 627
-
-
Shemin, D.1
Rittenberg, D.2
-
18
-
-
0023943252
-
Senescence of red blood cells: Progress and problems
-
Clark M.R. Senescence of red blood cells: Progress and problems. Physiol. Rev. 1988, 68:503.
-
(1988)
Physiol. Rev.
, vol.68
, pp. 503
-
-
Clark, M.R.1
-
19
-
-
49449113814
-
Complex dynamics of human red blood cell flickering: Alterations with in vivo aging
-
10.1103/PhysRevE.78.020901
-
Costa M. Ghiran I. Peng C.-K. Nicholson-Weller A. Goldberger A.L. Complex dynamics of human red blood cell flickering: Alterations with in vivo aging. Phys. Rev. E 2008, 78:020901. 10.1103/PhysRevE.78.020901
-
(2008)
Phys. Rev. E
, vol.78
, pp. 020901
-
-
Costa, M.1
Ghiran, I.2
Peng, C.-K.3
Nicholson-Weller, A.4
Goldberger, A.L.5
-
20
-
-
77951046170
-
Measurement of red blood cell mechanics during morphological changes
-
10.1073/pnas.0909533107
-
Park Y.K. Best C.A. Badizadegana K. Dasaria R.R. Feld M.S. Kuriabovad T. Henlee M.L. Levine A.J. Popescua G. Measurement of red blood cell mechanics during morphological changes. Proc. Natl. Acad. Sci. U.S.A. 2010, 107:6731. 10.1073/pnas.0909533107
-
(2010)
Proc. Natl. Acad. Sci. U.S.A.
, vol.107
, pp. 6731
-
-
Park, Y.K.1
Best, C.A.2
Badizadegana, K.3
Dasaria, R.R.4
Feld, M.S.5
Kuriabovad, T.6
Henlee, M.L.7
Levine, A.J.8
Popescua, G.9
-
21
-
-
0021952980
-
Cell age-dependent changes in deformability and calcium accumulation of human erythrocytes
-
10.1016/0005-2736(85)90447-X
-
Shiga T. Sekiya M. Maeda N. Kon K. Okazaki M. Cell age-dependent changes in deformability and calcium accumulation of human erythrocytes. Biochim. Biophys. Acta 1985, 814:289. 10.1016/0005-2736(85)90447-X
-
(1985)
Biochim. Biophys. Acta
, vol.814
, pp. 289
-
-
Shiga, T.1
Sekiya, M.2
Maeda, N.3
Kon, K.4
Okazaki, M.5
-
22
-
-
0021807724
-
Red blood cell deformation in shear flow: Effects of internal and external phase viscosity and of in vivo aging
-
10.1016/S0006-3495(85)83966-7
-
Pfafferott C. Nash G.B. Meiselman H.J. Red blood cell deformation in shear flow: Effects of internal and external phase viscosity and of in vivo aging. Biophys. J. 1985, 47:695. 10.1016/S0006-3495(85)83966-7
-
(1985)
Biophys. J.
, vol.47
, pp. 695
-
-
Pfafferott, C.1
Nash, G.B.2
Meiselman, H.J.3
-
23
-
-
0028011841
-
Determinants of red blood cell deformability in relation to cell age
-
10.1111/j.1600-0609.1994.tb01282.x
-
Bosch F.H. Werre J.M. Schipper L. Roerdinkholder-Stoelwinder B. Huls T. Willekens F.L. A. Wichers G. Halie M.R. Determinants of red blood cell deformability in relation to cell age. Eur. J. Haematol. 1994, 52:35. 10.1111/j.1600-0609.1994.tb01282.x
-
(1994)
Eur. J. Haematol.
, vol.52
, pp. 35
-
-
Bosch, F.H.1
Werre, J.M.2
Schipper, L.3
Roerdinkholder-Stoelwinder, B.4
Huls, T.5
Willekens, F.L.A.6
Wichers, G.7
Halie, M.R.8
-
24
-
-
0014411259
-
Rheological comparison of hemoglobin solutions and erythrocyte suspensions
-
10.1126/science.162.3850.275
-
Cokelet G.R. Meiselman H.J. Rheological comparison of hemoglobin solutions and erythrocyte suspensions. Science 1968, 162:275. 10.1126/science.162.3850.275
-
(1968)
Science
, vol.162
, pp. 275
-
-
Cokelet, G.R.1
Meiselman, H.J.2
-
25
-
-
0031169672
-
Concentration dependence of Brownian motion and the viscosity of hemoglobin solutions
-
10.1143/JJAP.36.3786
-
Iino M. Okuda Y. Concentration dependence of Brownian motion and the viscosity of hemoglobin solutions. Jpn. J. Appl. Phys. 1997, 36:3786. 10.1143/JJAP.36.3786
-
(1997)
Jpn. J. Appl. Phys.
, vol.36
, pp. 3786
-
-
Iino, M.1
Okuda, Y.2
-
26
-
-
0018843336
-
The internal viscosity of the human erythrocyte may determine its lifespan in vivo
-
10.1111/j.1600-0609.1980.tb01318.x
-
Williams A.R. Morris D.R. The internal viscosity of the human erythrocyte may determine its lifespan in vivo. Scand. J. Haematol. 1980, 24:57. 10.1111/j.1600-0609.1980.tb01318.x
-
(1980)
Scand. J. Haematol.
, vol.24
, pp. 57
-
-
Williams, A.R.1
Morris, D.R.2
-
27
-
-
84861900366
-
Age-dependent acoustic and microelastic properties of red blood cells determined by vector contrast acoustic microscopy
-
10.1017/S143192761200030X
-
Mohamed E.T. A. Kamanyi A.E. Pluta M. Grill W. Age-dependent acoustic and microelastic properties of red blood cells determined by vector contrast acoustic microscopy. Microsc. Microanal. 2012, 18:436. 10.1017/S143192761200030X
-
(2012)
Microsc. Microanal.
, vol.18
, pp. 436
-
-
Mohamed, E.T.A.1
Kamanyi, A.E.2
Pluta, M.3
Grill, W.4
-
28
-
-
0019967690
-
Geometric, osmotic, and membrane mechanical properties of density-separated human red cells
-
Linderkamp O. Meiselman H.J. Geometric, osmotic, and membrane mechanical properties of density-separated human red cells. Blood 1982, 59:1121.
-
(1982)
Blood
, vol.59
, pp. 1121
-
-
Linderkamp, O.1
Meiselman, H.J.2
-
30
-
-
0020959290
-
Red cell and ghost viscoelasticity: Effects of hemoglobin concentration and in vivo aging
-
10.1016/S0006-3495(83)84324-0
-
Nash G.B. Meiselman H.J. Red cell and ghost viscoelasticity: Effects of hemoglobin concentration and in vivo aging. Biophys. J. 1983, 43:63. 10.1016/S0006-3495(83)84324-0
-
(1983)
Biophys. J.
, vol.43
, pp. 63
-
-
Nash, G.B.1
Meiselman, H.J.2
-
31
-
-
35348904935
-
The structure and function of the endothelial glycocalyx layer
-
10.1146/annurev.bioeng.9.060906.151959
-
Weinbaum S. Tarbell J.M. Damiano E.R. The structure and function of the endothelial glycocalyx layer. Annu. Rev. Biomed. Eng. 2007, 9:121. 10.1146/annurev.bioeng.9.060906.151959
-
(2007)
Annu. Rev. Biomed. Eng.
, vol.9
, pp. 121
-
-
Weinbaum, S.1
Tarbell, J.M.2
Damiano, E.R.3
-
32
-
-
0015595017
-
Strain energy function of red blood-cell membranes
-
10.1016/S0006-3495(73)85983-1
-
Skalak R. Tozeren A. Zarda R.P. Chien S. Strain energy function of red blood-cell membranes. Biophys. J. 1973, 13:245. 10.1016/S0006-3495(73)85983-1
-
(1973)
Biophys. J.
, vol.13
, pp. 245
-
-
Skalak, R.1
Tozeren, A.2
Zarda, R.P.3
Chien, S.4
-
33
-
-
15844421247
-
Axisymmetric motion of a file of red blood cells through capillaries
-
10.1063/1.1830484
-
Pozrikidis C. Axisymmetric motion of a file of red blood cells through capillaries. Phys. Fluids 2005, 17:031503. 10.1063/1.1830484
-
(2005)
Phys. Fluids
, vol.17
, pp. 031503
-
-
Pozrikidis, C.1
-
34
-
-
78649442741
-
A spectral boundary integral method for flowing blood cells
-
10.1016/j.jcp.2010.01.024
-
Zhao H. Isfahani A.H. G. Olson L. Freund J.B. A spectral boundary integral method for flowing blood cells. J. Comput. Phys. 2010, 229:3726. 10.1016/j.jcp.2010.01.024
-
(2010)
J. Comput. Phys.
, vol.229
, pp. 3726
-
-
Zhao, H.1
Isfahani, A.H.G.2
Olson, L.3
Freund, J.B.4
-
35
-
-
84969726892
-
A fast high-resolution boundary integral method for multiple interacting blood cells
-
C. Pozrikidis, edited by (Chapman & Hall, Boca Raton, FL)
-
Freund J.B. Zhao H. A fast high-resolution boundary integral method for multiple interacting blood cells. Computational Hydrodynamics of Capsules and Biological Cells 2010, 71-111. C. Pozrikidis, and in edited by (Chapman & Hall, Boca Raton, FL)
-
(2010)
Computational Hydrodynamics of Capsules and Biological Cells
, pp. 71-111
-
-
Freund, J.B.1
Zhao, H.2
-
38
-
-
79952817091
-
Cellular flow in a small blood vessel
-
10.1017/S0022112010005835
-
Freund J.B. Orescanin M.M. Cellular flow in a small blood vessel. J. Fluid Mech. 2011, 671:466. 10.1017/S0022112010005835
-
(2011)
J. Fluid Mech.
, vol.671
, pp. 466
-
-
Freund, J.B.1
Orescanin, M.M.2
-
39
-
-
84861975858
-
Transport of particles by magnetic forces and cellular blood flow in a model microvessel
-
10.1063/1.4718752
-
Freund J.B. Shapiro B. Transport of particles by magnetic forces and cellular blood flow in a model microvessel. Phys. Fluids 2012, 24:051904. 10.1063/1.4718752
-
(2012)
Phys. Fluids
, vol.24
, pp. 051904
-
-
Freund, J.B.1
Shapiro, B.2
|