Effect of exercise on hemodynamic conditions in the abdominal aorta.
暂无分享,去创建一个
T. Hughes | C. Taylor | C. Zarins | C K Zarins | C. A. Taylor | C A Taylor | T J Hughes
[1] Michael M. Resch,et al. Pulsatile non-Newtonian blood flow in three-dimensional carotid bifurcation models: a numerical study of flow phenomena under different bifurcation angles. , 1991, Journal of biomedical engineering.
[2] D N Ku,et al. Reverse flow in the major infrarenal vessels--a capacitive phenomenon. , 1988, Biorheology.
[3] Carol Ewing Garber,et al. ACSM Position Stand: The Recommended Quantity and Quality of Exercise for Developing and Maintaining Cardiorespiratory and Muscular Fitness, and Flexibility in Healthy Adults , 1998 .
[4] D. Ku,et al. Pulsatile flow visualization in the abdominal aorta under differing physiologic conditions: implications for increased susceptibility to atherosclerosis. , 1992, Journal of biomechanical engineering.
[5] M H Buonocore,et al. Blood flow measurements in the aorta and major arteries with MR velocity mapping , 1994, Journal of magnetic resonance imaging : JMRI.
[6] T. Hughes,et al. The Galerkin/least-squares method for advective-diffusive equations , 1988 .
[7] Thomas J. R. Hughes,et al. Finite element modeling of blood flow in arteries , 1998 .
[8] Mark S. Shephard,et al. Automatic three-dimensional mesh generation by the finite octree technique , 1984 .
[9] Wing Kam Liu,et al. Lagrangian-Eulerian finite element formulation for incompressible viscous flows☆ , 1981 .
[10] K. T. Scott,et al. Non-planar curvature and branching of arteries and non-planar-type flow , 1996, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[11] K. Perktold,et al. Computer simulation of local blood flow and vessel mechanics in a compliant carotid artery bifurcation model. , 1995, Journal of biomechanics.
[12] C Kleinstreuer,et al. Numerical investigation and prediction of atherogenic sites in branching arteries. , 1995, Journal of biomechanical engineering.
[13] P Boesiger,et al. Human abdominal aorta: comparative measurements of blood flow with MR imaging and multigated Doppler US. , 1989, Radiology.
[14] R S Paffenbarger,et al. Exercise intensity and longevity in men. The Harvard Alumni Health Study. , 1995, JAMA.
[15] C. Higgins,et al. Flow pattern analysis in the abdominal aorta with velocity‐encoded cine MR imaging , 1993, Journal of magnetic resonance imaging : JMRI.
[16] L. Jorfeldt,et al. Leg blood flow during exercise in man. , 1971, Clinical science.
[17] N J Pelc,et al. Quantitative magnetic resonance flow imaging. , 1994, Magnetic resonance quarterly.
[18] Michael M. Resch,et al. Three-dimensional numerical analysis of pulsatile flow and wall shear stress in the carotid artery bifurcation. , 1991, Journal of biomechanics.
[19] J F Cornhill,et al. Topography of human aortic sudanophilic lesions. , 1990, Monographs on atherosclerosis.
[20] K. Patrick,et al. Physical Activity and Public Health: A Recommendation From the Centers for Disease Control and Prevention and the American College of Sports Medicine , 1995 .
[21] J. Wilmore,et al. Exercise in Health and Disease: Evaluation and Prescription for Prevention and Rehabilitation , 1984 .
[22] C. Zarins,et al. Carotid Bifurcation Atherosclerosis: Quantitative Correlation of Plaque Localization with Flow Velocity Profiles and Wall Shear Stress , 1983, Circulation research.
[23] A P Yoganathan,et al. Two-dimensional velocity measurements in a pulsatile flow model of the normal abdominal aorta simulating different hemodynamic conditions. , 1993, Journal of biomechanics.
[24] Thomas J. R. Hughes,et al. Computational investigations in vascular disease , 1996 .
[25] Gerald T. Gau. Exercise in Health and Disease: Evaluation and Prescription for Prevention and Rehabilitation , 1985 .
[26] H. Kohl,et al. Changes in Physical Fitness and All-Cause Mortality: A Prospective Study of Healthy and Unhealthy Men , 1995 .
[27] C. Kleinstreuer,et al. Computational design of a bypass graft that minimizes wall shear stress gradients in the region of the distal anastomosis. , 1997, Journal of vascular surgery.
[28] D. Ku,et al. Pulsatile Flow and Atherosclerosis in the Human Carotid Bifurcation: Positive Correlation between Plaque Location and Low and Oscillating Shear Stress , 1985, Arteriosclerosis.
[29] Francis Loth,et al. Velocity and wall shear measurements inside a vascular graft model under steady and pulsatile flow conditions , 1993 .
[30] J. Womersley. Method for the calculation of velocity, rate of flow and viscous drag in arteries when the pressure gradient is known , 1955, The Journal of physiology.
[31] Vipin Kumar,et al. A Fast and High Quality Multilevel Scheme for Partitioning Irregular Graphs , 1998, SIAM J. Sci. Comput..
[32] D. Ku,et al. Pulsatile velocity measurements in a model of the human abdominal aorta under simulated exercise and postprandial conditions. , 1994, Journal of biomechanical engineering.
[33] R S Paffenbarger,et al. Physical fitness and all-cause mortality. A prospective study of healthy men and women. , 1989, JAMA.
[34] D. Ku,et al. Pulsatile velocity measurements in a model of the human abdominal aorta under resting conditions. , 1994, Journal of biomechanical engineering.
[35] P Boesiger,et al. Hemodynamics in the abdominal aorta: a comparison of in vitro and in vivo measurements. , 1994, Journal of applied physiology.
[36] D N Firmin,et al. Exercise‐related changes in aortic flow measured with spiral echo‐planar MR velocity mapping , 1995, Journal of magnetic resonance imaging : JMRI.
[37] S Glagov. Hemodynamic factors in localisation of atherosclerosis. , 1965, Acta cardiologica.
[38] S Glagov,et al. Fluid wall shear stress measurements in a model of the human abdominal aorta: oscillatory behavior and relationship to atherosclerosis. , 1994, Atherosclerosis.
[39] Thomas J. R. Hughes,et al. A globally convergent matrix-free algorithm for implicit time-marching schemes arising in finite element analysis in fluids , 1991 .
[40] D. Ku,et al. Pulsatile flow in the human left coronary artery bifurcation: average conditions. , 1996, Journal of biomechanical engineering.
[41] C Kleinstreuer,et al. Effect of carotid artery geometry on the magnitude and distribution of wall shear stress gradients. , 1996, Journal of vascular surgery.
[42] J P Cooke,et al. Cardiovascular effects of exercise: role of endothelial shear stress. , 1996, Journal of the American College of Cardiology.
[43] Mark S. Shephard,et al. Automatic three‐dimensional mesh generation by the finite octree technique , 1984 .
[44] D. Liepsch,et al. Blood flow in large arteries: applications to atherogenesis and clinical medicine. International Symposium on Biofluid Mechanics. Palm Springs, CA, April 27-29, 1988. , 1990, Monographs on atherosclerosis.
[45] T. Hughes,et al. Streamline upwind/Petrov-Galerkin formulations for convection dominated flows with particular emphasis on the incompressible Navier-Stokes equations , 1990 .