Literature DB >> 8964634

Monitoring sodium removal and delivered dialysis by conductivity.

F Locatelli1, S Di Filippo, C Manzoni, M Corti, S Andrulli, G Pontoriero.   

Abstract

As cardiovascular stability and the delivery of the prescribed dialysis "dose" seem to be the main factors in determining the morbidity and mortality of hemodialyzer patients today, it is of paramount importance to match hydro-sodium removal with interdialytic load and to verify the delivered dialysis at each session. A specially designed Biofeedback Module (BM--COT Hospal) allows the automatic determination of plasma water conductivity and effective ionic dialysance with no need for blood samples. Using BM, we evaluated the validity of "conductivity kinetic modelling" (CKM) and the possibility that this may substitute "sodium kinetic modelling". Moreover, we evaluated the "in vivo" relationship between ionic dialysance and effective urea clearance. Our results demonstrate that: 1) CKM makes it possible to obtain programmed end-dialysis plasma water conductivity with an error of less than +/- 0.14 mS/cm, roughly equivalent to a sodium concentration of +/- 1.4 mEq/L. 2). Ionic dialysance and effective urea clearance are not equivalent but, as the interrelationship between these is known, the BM allows the routine monitoring of delivered dialysis.

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Year:  1995        PMID: 8964634

Source DB:  PubMed          Journal:  Int J Artif Organs        ISSN: 0391-3988            Impact factor:   1.595


  2 in total

1.  Rationale and design of the Sodium Lowering In Dialysate (SoLID) trial: a randomised controlled trial of low versus standard dialysate sodium concentration during hemodialysis for regression of left ventricular mass.

Authors:  Joanna Leigh Dunlop; Alain Charles Vandal; Janak Rashme de Zoysa; Ruvin Sampath Gabriel; Imad Adbi Haloob; Christopher John Hood; Philip James Matheson; David Owen Ross McGregor; Kannaiyan Samuel Rabindranath; David John Semple; Mark Roger Marshall
Journal:  BMC Nephrol       Date:  2013-07-15       Impact factor: 2.388

2.  Sodium concentration measurement during hemodialysis through ion-exchange resin and conductivity measure approach: in vitro experiments.

Authors:  Andrea Tura; Stefano Sbrignadello; Emanuele Mambelli; Paolo Ravazzani; Antonio Santoro; Giovanni Pacini
Journal:  PLoS One       Date:  2013-07-02       Impact factor: 3.240

  2 in total

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