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F Lopot

Publications and source records attributed to F Lopot.

10 recordsLinked to original sources

An equation for calculating postdialysis plasma sodium.

Well defined dry weight is a must for adequate UF control during haemodialysis (HD). However, interdialytic weight gain (delta BW) must not be excessive. delta BW is closely related to interdialytic thirst which in turn is strongly influenced by post-dialysis plasma sodium (CPNa post), but little is known about the desired CPNa post. The points below serve as a basis for establishing this value. a) Thirst is mediated by osmoreceptors. b) A strong correlation has been found between delta BW and intradialytic increase in plasma sodium but no such correlation exists with the interdialytic increase in plasma urea. This indicates that fluid intake between dialyses depends solely on electrolytes. c) Pre-dialysis plasma sodium in an individual is stable, indicating that the patient is at his "set value" of electrolyte osmolality. d) Half of the potassium removed during HD comes from the extra- and half from the intracellular space. Assuming that it is desirable not to disturb a patient's pre-dialysis osmotic steady state, it can be calculated that the desired CPNa post should be higher than the pre-dialysis value by half of the intradialytic plasma potassium drop, i.e., approx. CPNa post = CPNa pre + 1 to 2 mmol/l.

Humans

Is urea kinetic modelling an appropriate tool for guiding ultrashort high-flux dialysis therapy?

High-flux dialysers are frequently used for highly efficient ultrashort treatment schedules. To avoid the risk of inadequately low dialysis dose in this treatment strategy where 'every minute counts', it is often advocated to monitor the treatment quality by means of urea kinetic modelling (UKM). However, careful computational analysis of concentration curves generated by UKM versus more realistic two-pool model curves indicates the risk of substantial overestimation of the protein catabolic rate (PCR). Therefore conventional UKM should not be used to monitor and/or guide treatment schedules with dialyser urea clearance greater than 250 ml/min and dialysis time less than 3 h. Under these conditions, PCR can be overestimated by as much as 20%.

Humans

[Optimizing dialysis treatment in acute renal failure].

The empirical dialysis therapy of acute renal failure should be replaced by modern scientific methods of treatment. The classic indications for hemodialysis are hyperkaliemia, hyperhydratation, acidosis and uremia. While previously a dialysis was indicated in a concentration of blood urea nitrogen of more than 70 mmol/l today a serum level of 30 mmol/l is recommended. By the kinetic urea-modelling an individualized and effective dialysis-guidance is possible. The important data may be determined by a simple computer program in few seconds.

Acute Kidney Injury

Pre-vs. post-dilutional hemofiltration.

The advantages and disadvantages of pre- and postdilution in hemofiltration are discussed, and formulae are derived for sieving coefficient, fractional clearance, and hemofiltration clearance. On the basis of these formulae the two methods are compared, and it is concluded that the present state of membranes is such that the postdilution method is more convenient and cheaper.

Blood