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Results for “Drug Dosage Calculations”

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At least 19 recordsLinked to original sources

Learning style as a predictor of drug dosage calculation ability.

This study measured the learning style in mathematics of nursing students to determine if there was a correlation with their ability to calculate drug dosages. The results seem to indicate that instructors can improve the ability of their students to calculate drug dosages by integrating instructional methods that 1) reinforce the student's preferred learning style; and 2) require the student to use both sequential, step-by-step, paper and pencil processing and global, all-at-once mental processing.

Adult↗

Using dimensional analysis to improve drug dosage calculation ability.

Confidence and accuracy in medication calculation ability continue to be problematic among nursing students. This deficiency has been attributed to poor basic mathematical skills, inconsistent teaching methods, and inconsistent or incorrect use of multiple mathematical formulas. This article provides evidence of the value of dimensional analysis as an effective teaching strategy for calculating drug dosages.

Adult↗

Paramedic performance in calculating drug dosages following stressful scenarios in a human patient simulator.

BACKGROUND: Paramedics face many stressors in their work environment. Studies have shown that stress can have a negative effect on the psychological well-being of health professionals. However, there is little published research regarding the effects of stress on the cognitive skills necessary for optimal patient care. OBJECTIVES: The primary purpose of this study was to investigate the effects of acute stress on the emotional response and performance of paramedics. Furthermore, the authors explored whether a paramedic's level of training or years of experience would mediate the effects of stress on performance. METHODS: Paramedic performances in calculating drug dosages were compared in two stress conditions. In the low-stress condition, 30 paramedics calculated the drug dosages in a quiet classroom free of any stressor. In the high-stress condition, the same paramedics calculated comparable drug dosages immediately after working through a challenging scenario with a human patient simulator. RESULTS: The paramedics obtained lower accuracy scores in the high-stress condition than in the low-stress condition [43% (95% confidence interval [CI]: 36.9-49.2) vs. 58% (95% CI: 48.6-67.1), p < 0.01 based on univariate analysis]. Neither work experience nor level of training predicted the individual differences in the stress-induced performance decrements. CONCLUSION: These results suggest that the types of stressors encountered in clinical situations can increase medical errors, even in highly experienced individuals. These findings underline the need for more research to determine the mechanisms by which stress influences clinical performance, with the ultimate goal of targeting education or technologic interventions to those tasks, situations, and individuals most likely to benefit from such interventions.

Adaptation, Psychological↗

How to calculate drug dosage accurately: advice for nurses.

Nowhere is basic maths more important for nurses than when calculating drug doses. Simply having a GCSE in the subject does not seem to be good enough for the kind of mathematical calculations nurses need to be able to perform. However, following a few golden rules can simplify what at first appears to be a very complicated process.

Drug Therapy↗

Determination of ideal body weight for drug dosage calculations.

Formulas for ideal body weight (IBW) in men and women were derived from the Metropolitan Life Insurance Company height and weight tables. Regression determinations of median weight versus height were performed for men and women. A program for a minicomputer was developed to generate plots for small, medium, and large frame sizes and for subjects of all frame sizes. Equations for ideal body weight were derived from the resulting data. For men of all frame sizes, IBW = 51.65 kg + 1.85 kg/inch of height greater than 5 feet. For women of all frame sizes, IBW = 48.67 kg + 1.65 kg/inch of height greater than 5 feet. More accurate estimates of IBW by frame size can be obtained using equations derived from the plots for men and women of each frame size. Estimates of IBW obtained by the widely used empirical method probably contain only minor errors. However, formulas derived from actual height and weight data should be used in pharmacokinetic determination of dosage regimens for some drugs.

Body Height↗