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健康科学领域的药代动力学软件:为教学目的选择合适的软件包。

Pharmacokinetic software for the health sciences: choosing the right package for teaching purposes.

作者信息

Charles B G, Duffull S B

机构信息

The Australian Centre for Paediatric Pharmacokinetics, School of Pharmacy, The University of Queensland, Brisbane.

出版信息

Clin Pharmacokinet. 2001;40(6):395-403. doi: 10.2165/00003088-200140060-00001.

Abstract

Computer assisted learning has an important role in the teaching of pharmacokinetics to health sciences students because it transfers the emphasis from the purely mathematical domain to an 'experiential' domain in which graphical and symbolic representations of actions and their consequences form the major focus for learning. Basic pharmacokinetic concepts can be taught by experimenting with the interplay between dose and dosage interval with drug absorption (e.g. absorption rate, bioavailability), drug distribution (e.g. volume of distribution, protein binding) and drug elimination (e.g. clearance) on drug concentrations using library ('canned') pharmacokinetic models. Such 'what if' approaches are found in calculator-simulators such as PharmaCalc, Practical Pharmacokinetics and PK Solutions. Others such as SAAM II, ModelMaker, and Stella represent the 'systems dynamics' genre, which requires the user to conceptualise a problem and formulate the model on-screen using symbols, icons, and directional arrows. The choice of software should be determined by the aims of the subject/course, the experience and background of the students in pharmacokinetics, and institutional factors including price and networking capabilities of the package(s). Enhanced learning may result if the computer teaching of pharmacokinetics is supported by tutorials, especially where the techniques are applied to solving problems in which the link with healthcare practices is clearly established.

摘要

计算机辅助学习在向健康科学专业学生教授药代动力学方面发挥着重要作用,因为它将重点从纯数学领域转移到了“体验式”领域,在该领域中,药物作用及其后果的图形和符号表示成为学习的主要重点。可以通过使用库(“现成的”)药代动力学模型,对剂量与给药间隔之间的相互作用以及药物吸收(例如吸收速率、生物利用度)、药物分布(例如分布容积、蛋白结合)和药物消除(例如清除率)对药物浓度的影响进行实验,来教授基本的药代动力学概念。在诸如PharmaCalc、Practical Pharmacokinetics和PK Solutions等计算器模拟器中可以找到此类“如果……会怎样”的方法。其他软件,如SAAM II、ModelMaker和Stella则代表“系统动力学”类型,这要求用户将问题概念化,并使用符号、图标和方向箭头在屏幕上构建模型。软件的选择应根据学科/课程的目标、学生在药代动力学方面的经验和背景以及包括软件包价格和联网能力在内的机构因素来确定。如果药代动力学的计算机教学得到辅导的支持,尤其是在将这些技术应用于解决与医疗保健实践有明确联系的问题时,可能会增强学习效果。

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