George B. Thurston
Affiliations: | Mechanical Engineering | University of Texas at Austin, Austin, Texas, U.S.A. |
Area:
RheologyWebsite:
http://www.me.utexas.edu/directory/faculty/thurston/george/248/Google:
"George Thurston"Bio:
ftp://uts.cc.utexas.edu/admin/coe-grec/.html/mse_ebrouchure/thurston.html
http://www.scs.illinois.edu/~mainzv/Web_Genealogy/Info/thurstongb.pdf
Mean distance: 10.5
Cross-listing: Physics Tree
Parents
Sign in to add mentorDarrell S. Hughes | grad student | 1952 | UT Austin | |
(Periodic fluid flow through circular tubes) |
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Publications
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Sharp MK, Thurston GB, Moore JE. (1996) The effect of blood viscoelasticity on pulsatile flow in stationary and axially moving tubes. Biorheology. 33: 185-208 |
Thurston GB, Henderson NM. (1995) Impedance of a fibrin clot in a cylindrical tube: relation to clot permeability and viscoelasticity. Biorheology. 32: 503-20 |
Gomez JE, Thurston GB. (1993) Comparisons of the oscillatory shear viscoelasticity and composition of pathological synovial fluids. Biorheology. 30: 409-27 |
Liepsch D, Thurston G, Lee M. (1991) Studies of fluids simulating blood-like rheological properties and applications in models of arterial branches Biorheology. 28: 39-52 |
Thurston GB. (1990) Light transmission through blood in oscillatory flow. Biorheology. 27: 685-700 |
Thurston GB. (1989) Plasma release-cell layering theory for blood flow. Biorheology. 26: 199-214 |
Gaspar-Rosas A, Thurston GB. (1988) Erythrocyte aggregate rheology by transmitted and reflected light. Biorheology. 25: 471-87 |
More RB, Thurston GB. (1987) Intrinsic viscoelasticity of blood cell suspensions: effects of erythrocyte deformability. Biorheology. 24: 297-309 |
Thurston GB, Pope GA. (1987) Shear rate dependence of the viscoelasticity of polymer solutions. II. xanthan gum Journal of Non-Newtonian Fluid Mechanics. 9: 69-78 |
Thurston GB. (1987) Shear rate dependence of the viscoelasticity of polymer solutions. I. Theoretical model Journal of Non-Newtonian Fluid Mechanics. 9: 57-68 |