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J F Gross

Showing results (31-40 of 59) with videos related to

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Microvascular Research|January 1, 1976
Measurement of growth rate of laser-induced intravascular platelet aggregation and the influence of blood flow velocityK E Arfors, J S Cockburn, J F Gross
Bibliotheca Anatomica|January 1, 1979
Transcapillary fluid movement due to axially varying hydraulic wall conductivityH D Papenfuss, R W Gore, J F Gross
Microvascular Research|May 1, 1980
Effect of variable hydraulic conductivity on transcapillary fluid exchange: application to the microcirculation of rat intestinal muscleH D Papenfuss, R W Gore, J F Gross
Journal of the National Cancer Institute|September 1, 1980
Microcirculatory studies in rat mammary carcinoma. I. Transparent chamber method, development of microvasculature, and pressures in tumor vesselsW Peters, M Teixeira, M Intaglietta, et al.
Seminars in Thoracic and Cardiovascular Surgery|February 5, 2000
Fatigue-induced changes to the biaxial mechanical properties of glutaraldehyde-fixed porcine aortic valve leafletsG W Christie, J F Gross, C E Eberhardt
Biorheology|July 1, 1992
Mathematical model of the filtration in the vascular network of the ophidian glomerulusH D Papenfuss, J F Gross, S D Yokota
Cancer Research|January 1, 1979
Hemodynamic characteristics in microcirculatory blood channels during early tumor growthB Endrich, M Intaglietta, H S Reinhold, et al.
Journal of the National Cancer Institute|February 1, 1979
Tissue perfusion inhomogeneity during early tumor growth in ratsB Endrich, H S Reinhold, J F Gross, et al.
Biomedicine / [Publiee Pour L'A.A.I.C.I.G.]|January 1, 1974
Computer simulation in the service of chemotherapyT L Lincoln, J Aroesty, G Meier, et al.
Circulation Research|October 1, 1990
Blood flow in microvascular networks. Experiments and simulationA R Pries, T W Secomb, P Gaehtgens, et al.
Pageof 6

Showing results (31-40 of 59) with videos related to

Sort By:
Pageof 6
Microvascular Research|January 1, 1976
Measurement of growth rate of laser-induced intravascular platelet aggregation and the influence of blood flow velocityK E Arfors, J S Cockburn, J F Gross
Bibliotheca Anatomica|January 1, 1979
Transcapillary fluid movement due to axially varying hydraulic wall conductivityH D Papenfuss, R W Gore, J F Gross
Microvascular Research|May 1, 1980
Effect of variable hydraulic conductivity on transcapillary fluid exchange: application to the microcirculation of rat intestinal muscleH D Papenfuss, R W Gore, J F Gross
Journal of the National Cancer Institute|September 1, 1980
Microcirculatory studies in rat mammary carcinoma. I. Transparent chamber method, development of microvasculature, and pressures in tumor vesselsW Peters, M Teixeira, M Intaglietta, et al.
Seminars in Thoracic and Cardiovascular Surgery|February 5, 2000
Fatigue-induced changes to the biaxial mechanical properties of glutaraldehyde-fixed porcine aortic valve leafletsG W Christie, J F Gross, C E Eberhardt
Biorheology|July 1, 1992
Mathematical model of the filtration in the vascular network of the ophidian glomerulusH D Papenfuss, J F Gross, S D Yokota
Cancer Research|January 1, 1979
Hemodynamic characteristics in microcirculatory blood channels during early tumor growthB Endrich, M Intaglietta, H S Reinhold, et al.
Journal of the National Cancer Institute|February 1, 1979
Tissue perfusion inhomogeneity during early tumor growth in ratsB Endrich, H S Reinhold, J F Gross, et al.
Biomedicine / [Publiee Pour L'A.A.I.C.I.G.]|January 1, 1974
Computer simulation in the service of chemotherapyT L Lincoln, J Aroesty, G Meier, et al.
Circulation Research|October 1, 1990
Blood flow in microvascular networks. Experiments and simulationA R Pries, T W Secomb, P Gaehtgens, et al.
Pageof 6