A Non-Dimensional Analysis of Hemodialysis

Author:

Bonert Michael,Saville Bradley A

Abstract

Background: Non-dimensional analysis is a powerful approach that can be applied to multivariate problems to better understand their behaviour and interpret complex interactions of variables. It is has not been rigorously applied to the parameters that define renal dialysis treatments and may provide insight into the planning of hemodialysis treatments. Methods: Buckingham’s non-dimensional approach was applied to the parameters that define hemodialysis treatments. Non-dimensional groups were derived with knowledge of a mass transfer model and independent of it. Using a mass transfer model, the derived non-dimensional groups were plotted to develop an understanding of key relationships governing hemodialysis and toxin profiles in patients with end-stage renal disease. Results: Three non-dimensional groups are sufficient to describe hemodialysis, if there is no residual renal function (RRF). The non-dimensional groups found represent (1) the number of half-lives that characterize the mass transfer, (2) the toxin concentration divided by the rise in toxin concentration without dialysis for the cycle time (the inverse of the dialysis frequency), and (3) the ratio of dialysis time to the cycle time. If there is RRF, one additional non-dimensional group is needed (the ratio between cycle time and intradialytic elimination rate constant). Alternate non-dimensional groups can be derived from the four unique groups. Conclusions: Physical interpretation of the non-dimensional groups allows for greater insight into the parameters that determine dialysis effectiveness. This technique can be applied to any toxin and facilitates a greater understanding of dialysis treatment options. Quantitative measures of dialysis adequacy should be based on dimensional variables.

Publisher

Bentham Science Publishers Ltd.

Subject

Biomedical Engineering,Medicine (miscellaneous),Bioengineering

Reference23 articles.

1. Shinaberger J H. “Quantitation of dialysis: historical perspective,” Semin Dial 2001; 14 : 238-45.

2. Babb A L, Popovich R P, Christopher T G, and Scribner B H. “The genesis of the square meter-hour hypothesis,” Trans Am Soc Artif Intern Organs 1971; 17 : 81-91.

3. Sargent J A. “Control of dialysis by a single-pool urea model: the national cooperative dialysis study,” Kidney Int Suppl 1983; 13 : S19-25.

4. Burgelman M, Vanholder R, Fostier H, and Ringoir S. “Estimation of parameters in a two-pool urea kinetic model for hemodialysis,” Med Eng Phys 1997; 19 : 69-76.

5. White F M, Ed. Fluid mechanics. 3rd. Toronto: McGraw-Hill Inc 1994.

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