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Analytical solution of phosphate kinetics for hemodialysis.

Morten AndersenK O BangsgaardJ G HeafJohnny T Ottesen
Published in: Journal of mathematical biology (2023)
Chronic kidney diseases imply an ongoing need to remove toxins, with hemodialysis as the preferred treatment modality. We derive analytical expressions for phosphate clearance during dialysis, the single pass (SP) model corresponding to a standard clinical hemodialysis and the multi pass (MP) model, where dialysate is recycled and therefore makes a smaller clinical setting possible such as a transportable dialysis suitcase. For both cases we show that the convective contribution to the dialysate is negligible for the phosphate kinetics and derive simpler expressions. The SP and MP models are calibrated to clinical data of ten patients showing consistency between the models and provide estimates of the kinetic parameters. Immediately after dialysis a rebound effect is observed. We derive a simple formula describing this effect which is valid both posterior to SP or MP dialysis. The analytical formulas provide explanations to observations of previous clinical studies.
Keyphrases
  • end stage renal disease
  • peritoneal dialysis
  • chronic kidney disease
  • liquid chromatography
  • deep learning
  • ejection fraction
  • combination therapy
  • big data
  • replacement therapy
  • drug induced