篇名 | 作者 | 刊名 | 出版年 | 查看 |
In vivo fluorescent labeling of rolling leukocytes in rat skinmicrovasculature |
Ookawa, K.;Ohshima, N.;Janssen, G.H.G.W.;oude Egbrink, M.G.A.;Slaaf, D.W.;Reneman, R.S.;Tangelder, G.J.; |
Biorheology |
1996-01-02 |
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Effects of sedimentation of aggregated red cells on flow behavior of redcell suspensions in narrow horizontal tubes III |
Murata, T.; |
Biorheology |
1996-01-02 |
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Motion of dumbbell-like microparticles with center of gravity offset in acirculating flow |
Mikami, F.;Tanishita, K.; |
Biorheology |
1996-01-02 |
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Changes in HL-60 cell deformability during differentiation induced by DMSO |
M., A.T.;Waugh, R.E.;P., C.K.; |
Biorheology |
1996-01-02 |
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The effect of aging and pressure on the specific hydraulic conductivity ofthe aortic wall |
Whale, M.D.;Grodzinsky, A.J.;Johnson, M.; |
Biorheology |
1996-01-02 |
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Neutrophil activation in smokers |
Pitzer, J.E.;Del Zoppo, G.J.;Schmid-Schonbein, G.W.; |
Biorheology |
1996-01-02 |
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Optimum kinetic energy dissipation in blood flow in glass capillaries byflow field determination: analysis of curvature effect by axial tomographicand image velocimetry techniques |
Prakash, B.;Singh, M.; |
Biorheology |
1996-01-02 |
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Rheological analysis of blood coagulation and thrombus formation invascular vessel model systems |
Kaibara, M.; |
Biorheology |
1996-01-02 |
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The effects of disturbed flows on thrombus formation |
Karino, T.; |
Biorheology |
1996-01-02 |
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Platelet thrombus model in microvessels |
Sato, M.; |
Biorheology |
1996-01-02 |
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Intracardiac and intravascular thrombosis |
Masuda, Y.; |
Biorheology |
1996-01-02 |
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Effects of sodium chloride, guanidine hydrochloride and sucrose on therheological properties of hyaluronic acid solutions |
Y., M.;Takaya, T.;Nishinari, K.; |
Biorheology |
1996-01-02 |
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Double wall layer model of biofluids flowing in a capillary |
Nakamura, T.;Sakon, K.;Yamamoto, A.;Mineshita, T.; |
Biorheology |
1996-01-02 |
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Diffusion coefficient of oxygen in viscous solution as a function of watercontent and temperature |
Itoh, T.;Yaegashi, K.;Kosaka, T.;Fukushima, H.; |
Biorheology |
1996-01-02 |
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The mechanical properties of polyurethane and gelatin/polyurethanecomposite vascular prostheses |
B., L.;Kaibara, M.; |
Biorheology |
1996-01-02 |
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Stress Relaxation Function of Cortical Bone as a Function of Temperature |
Goto, T.;Sasaki, N.;Hikichi, K.; |
Biorheology |
1996-01-02 |
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New sensor for detecting stiffness of tumor in vivo and in real timemeasurement |
Omata, S.; |
Biorheology |
1996-01-02 |
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Stiffness of tumor in mammary region using a new sensor |
Mabuchi, T.;Omata, S.;Hara, K.;Kimijima, I.;Abe, R.; |
Biorheology |
1996-01-02 |
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In Vivo Imaging of Cainine Intra-renal Microvessels and Evaluation of theEffect of Angiotensin II by a Needle-Probe Microscope |
Yamamoto, T.;Mochizuki, S.;Tanaka, H.;Nakamoto, H.;Toyota, E.;Tokuda, C.;Yamamori, S.;Hosaka, H.;Tsujioka, K.;Kajiya, F.; |
Biorheology |
1996-01-02 |
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Hemorheological changes of microvasculature during development ofhypertension and repetitive smoke inhalation ore cholesterol feeding withinthe same cutaneous microcirculatory system in the rabbit(4) |
Ohkubo, C.;Yamada, S.;Xu, S.;Asano, M.; |
Biorheology |
1996-01-02 |
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Effect of arterial PO"2 on microheterogeneity of myocardial blood flowevaluated by a molecular deposition technique |
Matsumoto, T.;Ogasawara, Y.;Goto, M.;Tachibana, T.;Tsujioka, K.;Kajiya, F.; |
Biorheology |
1996-01-02 |
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In vivo measurement of structural changes in the microcirculation of theskeletal muscle under long term blood flow loading |
Kosaki, K.;Ichioka, S.;Shibata, M.;Kawarada, A.;Kamiya, A.; |
Biorheology |
1996-01-02 |
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Increased blood flow stimulates remodeling of the microvasculature in therabbit skin |
Ichioka, S.;Kosaki, K.;Shibata, M.;Kamiya, A.; |
Biorheology |
1996-01-02 |
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Changes of flow behavior of erythrocytes in microvessels and flowresistance accompanied by erythrocyte aggregation |
Suzuki, Y.;Soutani, M.;Tateishi, N.;Maeda, N.; |
Biorheology |
1996-01-02 |
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Difference of the flow behavior of erythrocytes in microvessels and glasscapillaries |
Maeda, N.;Soutani, M.;Suzuki, Y.;Taniguchi, T.;Tateishi, N.; |
Biorheology |
1996-01-02 |
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Comparison of spontaneous rhythmic flow motion between microvessels and anartery in the rabbit ear. |
Minamiyama, M.;Nakano, A.;Hanai, S.; |
Biorheology |
1996-01-02 |
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Estimation of large pore radius and density distribution by intact singlecapillary measurement in the rabbit skeletal muscle |
Kawamura, T.;Shibata, M.;Kamiya, A.; |
Biorheology |
1996-01-02 |
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Motion of blood cells in microvessels of variable cross-section andvascular resistance |
Sugihara-Seki, M.; |
Biorheology |
1996-01-02 |
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The enhanced diffusion by tank-tread motion of erythrocyte membrane |
Tarao, N.;Takagi, O.;Nagayama, N.; |
Biorheology |
1996-01-02 |
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Hemodynamic changes in cerebral microcirculation of cat under halothaneanesthesia: An intravital fluorescence video-microscopic study |
Nakajima, T.;Kuro, M.;Niimi, H.;Yamaguchi, S.;Hussain, M.A.; |
Biorheology |
1996-01-02 |
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Mechanism of the Dopamine (DA)-induced Venoconstrictive Action - Comparingwith the Arterioconstrictive Action of DA |
Segawa, T.;Inoue, K.;Minatoguchi, S.;Fujiwara, H.;Ito, H.; |
Biorheology |
1996-01-02 |
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Adhesion strength of endothelial cells cultured on modified segmentedpolyurethane surfaces under flow shear stress |
Kawamoto, Y.;Kaibara, M.;Wada, N.; |
Biorheology |
1996-01-02 |
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Computational analysis of the flow and wall mechanics in models of variousvascular disorders |
Yamaguchi, T.; |
Biorheology |
1996-01-02 |
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Lateral movement induced in compliant tubes conveying pulsatile flow |
Arakawa, M.; |
Biorheology |
1996-01-02 |
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A diffusion model in an asymmetric stenosis |
Tarao, N.; |
Biorheology |
1996-01-02 |
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Erythrocyte deformability of nonpregnant, pregnant, and fetal blood |
Sawai, T.;Eguchi, K.;Mizutani, Y.;Kudo, T.;Noji, S.; |
Biorheology |
1996-01-02 |
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Evaluation of effective pore radius of nickel mesh by pressure-flow raterelationships of airflow |
Uyesaka, N.;Yamawaki, S.;Oonishi, T.;Kawa, T.;Shio, H.;Fujino, T.; |
Biorheology |
1996-01-02 |
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Enhanced sedimentation rate of bovine erythrocytes at a low temperature |
Deushi, S.;Tashimo, T.;Toyama, Y.;Dobashi, T.;Sakanishi, A.; |
Biorheology |
1996-01-02 |
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An effect of strong magnetic field on erythrocyte sedimentation rate. |
Iino, M.; |
Biorheology |
1996-01-02 |
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Cone-plate viscometer-based apparatus for quantitative measurement ofplatelet adhesion onto biomaterial surfaces |
Furukawa, K.;Ookawa, K.;Yanagi, K.;Ushida, T.;Tateishi, T.;Ohshima, N.; |
Biorheology |
1996-01-02 |
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Rheology of blood coagulation |
Kaibara, M.; |
Biorheology |
1996-03-04 |
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Model studies of leukocyte-endothelium-blood interactions - I. The fluidflow drag force on the adherent leukocyte |
Chapman, G.;Cokelet, G.; |
Biorheology |
1996-03-04 |
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Study of red blood cell aggregation by admittance measurements |
Pribush, A.;Meyerstein, D.;Meyerstein, N.; |
Biorheology |
1996-03-04 |
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The influence of suspending phase viscosity on the passage of red bloodcells through capillary-size micropores |
Fisher, T.C.;Van der Waart, F.J.;Meiselman, H.J.; |
Biorheology |
1996-03-04 |
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Deformability of red blood cells from different species studied byresistive pulse shape analysis technique |
Baskurt, O.K.; |
Biorheology |
1996-03-04 |
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The effect of blood viscoelasticity on pulsatile flow in stationary andaxially moving tubes |
Sharp, M.K.;Thurston, G.B.;Moore, J.E.; |
Biorheology |
1996-05-06 |
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Epinephrine and shear stress synergistically induce platelet aggregationvia a mechanism that partially bypasses vWF-Gp Ib interactions |
Wagner, C.T.;Kroll, M.H.;Chow, T.W.;Hellums, J.D.;Schafer, A.I.; |
Biorheology |
1996-05-06 |
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A subpopulation analysis of f-MLP stimulated granulocytes migrating infilters |
Ebrahimzadeh, P.R.;Bazargani, F.;Afzal, F.;Hogfors, C.;Braide, M.; |
Biorheology |
1996-05-06 |
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A photometric method to analyze induced erythrocyte shape changes |
Artmann, G.M.;A., L.;Ziemer, J.;Schneider, G.;Sahm, U.; |
Biorheology |
1996-05-06 |
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Effects of sedimentation of small red blood cell aggregates on blood flowin narrow horizontal tubes |
Murata, T.; |
Biorheology |
1996-05-06 |
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High bypass flow from percutaneous pulmonary support (PCPS) diminishessystolic unloading of intraaortic balloon pumping (IABP) |
Miyawaki, F.;Mukai, F.;Murata, M.;Tsuji, T.; |
Biorheology |
1996-07-10 |
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Intraaortic balloon pumping dilates coronary arterioles being mediated byendothelium-derived nitric oxide |
Toyota, E.;Nakamoto, H.;Ebata, J.;Hiramatsu, O.;Goto, M.;Ogasawara, Y.;Kajiya, F.; |
Biorheology |
1996-07-10 |
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