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  • Cavity  (1)
  • Incompressible Flow  (1)
  • Incompressible Fluid Flows  (1)
  • Inviscid Flow  (1)
  • Toxicity  (1)
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  • 1
    ISSN: 1432-2277
    Schlagwort(e): Cyclosporine A ; Cyclosporine G ; Toxicity ; Hepatotoxicity ; Nephrotoxicity ; Splenic atrophy ; Mice
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Medizin
    Notizen: Abstract Our group has previously shown that cyclosporine A (CSA) but not cyclosporine G (CSG) causes splenic atrophy in a BALB/c mouse model. We have now extended our studies to observations of the effect of the two drugs on other parenchymal organs and on the nervous system. Groups of mice (N=30) were given 150 mg/kg per day of either CSA or CSG and were compared to two control groups. Absorption of the drugs was similar in the two groups, although CSG blood levels were slightly higher. Animals treated with CSA, but not CSG, lost up to 50% of body weight over a 3-week period. Overall mortality was much higher in the CSA group. Blood urea levels were significantly higher in both treatment groups than in controls and were significantly higher in the CSA than in the CSG group. CSA-treated animals showed marked histological changes in their kidneys, the most prominent of which was proximal tubular vacuolation. Both drugs showed some hepatotoxicity, both histologically and biochemically; the histological changes were more marked in the CSA group. There was no pancreatic toxicity at this dose, either histologically or in terms of blood-sugar concentrations. Mice treated with CSA, but not with CSG, showed marked behavioral changes, including hyperactivity and irritability. The most intriguing observation was the effect of CSA, but not CSG, on the spleen. There was atrophy of lymphoid tissue in both the B and the T cell areas, although the most prominent change was in the periarterial lymphatic sheaths. These changes may be of significance in the longterm maintenance of immunosuppression and graft acceptance. CSG appears, therefore, to be significantly less toxic overall in this model than CSA and warrants further study, both experimentally and clinically.
    Materialart: Digitale Medien
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 2
    Digitale Medien
    Digitale Medien
    Chichester : Wiley-Blackwell
    International Journal for Numerical Methods in Fluids 4 (1984), S. 203-205 
    ISSN: 0271-2091
    Schlagwort(e): Incompressible Fluid Flows ; Cavity ; Engineering ; Engineering General
    Quelle: Wiley InterScience Backfile Collection 1832-2000
    Thema: Maschinenbau
    Materialart: Digitale Medien
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 3
    Digitale Medien
    Digitale Medien
    Chichester : Wiley-Blackwell
    International Journal for Numerical Methods in Fluids 8 (1988), S. 1029-1036 
    ISSN: 0271-2091
    Schlagwort(e): Incompressible Flow ; Pressure Poisson Equation ; Inviscid Flow ; Boundary Conditions ; Engineering ; Engineering General
    Quelle: Wiley InterScience Backfile Collection 1832-2000
    Thema: Maschinenbau
    Notizen: In a recent paper Gresho and Sani showed that Dirichlet and Neumann boundary conditions for the pressure Poisson equation give the same solution. The purpose of this paper is to confirm this (for one case at least) by numerically solving the pressure equation with Dirichlet and Neumann boundary conditions for the inviscid stagnation point flow problem. The Dirichlet boundary condition is obtained by integrating the tangential component of the momentum equation along the boundary. The Neumann boundary condition is obtained by applying the normal component of the momentum equation at the boundary. In this work solutions for the Neumann problem exist only if a compatibility condition is satisfied. A consistent finite difference procedure which satisfies this condition on non-staggered grids is used for the solution of the pressure equation with Neumann conditions. Two test cases are computed. In the first case the velocity field is given from the analytical solution and the pressure is recovered from the solution of the associated Poisson equation. The computed results are identical for both Dirichlet and Neumann boundary conditions. However, the Dirichlet problem converges faster than the Neumann case. In the second test case the velocity field is computed from the momentum equations, which are solved iteratively with the pressure Poisson equation. In this case the Neumann problem converges faster than the Dirichlet problem.
    Zusätzliches Material: 5 Ill.
    Materialart: Digitale Medien
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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