Progress in Hemodialysis by A. Carpi, et. al.

By A. Carpi, et. al.

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1, pp. (194-203) Daugirdas, J. T. & Schneditz, D. (1995). Overestimation of hemodialysis dose depends on dialysis efficiency by regional blood flow but not by conventional two pool urea kinetic analysis. Asaio J, Vol. 41, No. 3, pp. (M719-24) Debowska, M. & Waniewski, J. (2005). Comparison of dialysis adequacy indices calculated according to one and two compartment model. Bio-Algorithms And Med-Systems, Vol. 1, No. 1, pp. , Waniewski, J. & Lindholm, B. (2005). Dialysis adequacy indices for peritoneal dialysis and hemodialysis.

1966). Thermodynamics of hyperfiltration (reverse osmosis): criteria for efficient membranes. Desalination, Vol. 1, pp. (311-326) Staverman, A. (1951). The theory of measurement of osmotic pressure. Rac trav chim, Vol. 70, pp. (344-352) 26 Progress in Hemodialysis – From Emergent Biotechnology to Clinical Practice Tattersall, J. , Greenwood, R. N. & Farrington, K. (1996). The post-hemodialysis rebound: predicting and quantifying its effect on Kt/V. Kidney Int, Vol. 50, No. 6, pp. , Gusmano, R.

Effect of dialysis dose and membrane flux in maintenance hemodialysis. N Engl J Med, Vol. 347, No. 25, pp. (2010-9) Gotch, F. A. (1998). The current place of urea kinetic modelling with respect to different dialysis modalities. Nephrol Dial Transplant, Vol. 13 Suppl 6, pp. (10-4) Gotch, F. A. (2001). Is Kt/V Urea a Satisfactory Measure for Dosing the Newer Dialysis Regimens? Semin Dial, Vol. 14, No. 1, pp. (15-17) Gotch, F. A. & Sargent, J. A. (1985). A mechanistic analysis of the National Cooperative Dialysis Study (NCDS).

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