Testing Computer-controlled Infusion Pumps by Simulation
Open Access
- 1 February 1988
- journal article
- research article
- Published by Wolters Kluwer Health in Anesthesiology
- Vol. 68 (2) , 261-266
- https://doi.org/10.1097/00000542-198802000-00013
Abstract
The pharmacokinetic behavior of intravenous anesthetic drugs can be described by two- or three-compartment models. Rapid achievement and maintenance of steady plasma concentrations of these drugs requires a complicated delivery scheme, perhaps best controlled by a computer. The authors developed a method of simulating the performance of a computer-controlled infusion pump from the differential equations describing drug transfer between compartments. They also derived a mathematically simple and flexible approximate solution to these equations using Euler''s numerical method. They incorporated this approximate solution into a computer-controlled infusion pump for intravenous drugs. They tested their pump by simulating the administration of fentanyl to a hypothetical patient whose fentanyl pharmacokinetics were described by a three-compartment model. The exact analytical solution served as the standard of comparison. The approximation technique, using a 15-s interval between model updates, had a maximum error of 0.25 ng .cntdot. ml-1, and rapidly converged on the exact solution. The simultations revealed oscillations in the system. The authors suggest that such simulations be used to evaluate computer-controlled infusion pumps prior to clinical trials of these devices.This publication has 5 references indexed in Scilit:
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