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Biomedical subjects

M Mlynarek

Publications and source records attributed to M Mlynarek.

3 recordsLinked to original sources

Determination of gentamicin pharmacokinetics by bioelectrical impedance in critically ill adults.

This investigation compares the accuracy of calculating gentamicin pharmacokinetic parameters by a noninvasive body composition technique (bioelectrical impedance analysis; BIA) with an empiric method, against the two-point method as the criterion standard. A prospective concurrent open label design was used. The 32 medical and surgical intensive care unit beds at Henry Ford Hospital, a not-for-profit, university-affiliated teaching hospital, served as the setting. Twenty critical ill adults, Therapeutic Index Scoring System (TISS) = 4, who required gentamicin as part of their normal course of therapy for gram-negative bacillary infections, were evaluated. Gentamicin Vd and k were calculated by three methods. After measurement of body composition parameters by BIA, previously derived gentamicin dosing equations were used to predict gentamicin volume of distribution (Vd) and elimination rate constant (k) (BIA method). Empiric estimates of these parameters (Vd = 0.3L/kg and k derived from creatinine clearance) were compared with the BIA parameters against a criterion standard Vd and k determined from a two-point sampling of gentamicin serum concentrations. Measurements of BIA parameters and gentamicin serum concentrations were made in duplicate with coefficients of variation, < or = 2% and < or = 3%, respectively. The BIA and empiric methods produced resultant pharmacokinetic parameters (Vd and k) not different than those measured by the two-point method. There were no statistically significant differences in mean error (bias), or mean squared error (precision) for both Vd and k assessed by the empiric or BIA methods.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Bar-code technology applied to drug-use evaluation.

Bar-code technology was used to determine: (1) patterns in histamine H2-receptor antagonist use and (2) the occurrence of adverse drug effects and drug interactions associated with the use of these agents in critically ill patients. Patients at Henry Ford Hospital (Detroit) receiving histamine H2-receptor antagonists over a two-month period were evaluated. Clinical information was collected in the intensive care units by using a bar-code system. The data-capture menu was based on drug-use-evaluation criteria for H2-receptor antagonists. Data collected in the scanning wands were uploaded into a computer database and were analyzed at the end of the study. Data were collected for 207 patients. Cimetidine was the predominant H2-receptor antagonist used, and the predominant indication was stress-ulcer prophylaxis. Dosing trends followed accepted guidelines for cimetidine dosage adjustment in renal and hepatic failure. Two drug interactions and six adverse drug reactions occurred. Pharmacists made 92 recommendations to the medical staff regarding modification in therapy, involving 32% of the patients. Data collection required an average of 10 minutes per day each for three pharmacists. H2-receptor antagonist use patterns were evaluated in intensive care units through the application of bar-code technology. The speed and efficiency of this automated tool facilitated collection of a large amount of data.

Clinical Pharmacy Information Systems

Individualizing nutrition in patients with acute respiratory failure requiring mechanical ventilation.

Provision of adequate nutrition is recognized as a therapeutic necessity to maintain inspiratory muscle strength and prevent weaning failures in patients with acute respiratory failure requiring mechanical ventilation. Total caloric needs are empirically estimated by calculation of basal energy expenditure and modified by correction factors for concurrent levels of stress. Energy requirements can vary considerably from empiric estimations and may be better defined by indirect calorimetry that measures oxygen consumption and carbon dioxide production. Protein constituents are initiated empirically until patient-specific urea nitrogen excretion is available. The addition of fat emulsion as 20-50 percent of total daily calories limits lipogenesis, prevents excessive carbon dioxide production, and provides a volume-concentrated caloric source to fluid-restricted patients. Manipulation of nutrient composition can improve or impair ventilatory weaning and nutritional rehabilitation. The significance of substrate utilization is reviewed and recommendations for establishing nutritional regimens for mechanically ventilated adults with acute respiratory failure are provided.

Energy Metabolism