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通过计算机模拟与面对面实验室课程相结合的方式向本科一年级学生介绍抗生素敏感性测试的基本原理。

Introducing First-Year Undergraduate Students the Fundamentals of Antibiotic Sensitivity Testing through a Combined Computer Simulation and Face-to-Face Laboratory Session.

作者信息

Mahdi Layla, Denyer Gareth, Caruso Connie, Costabile Maurizio

机构信息

University of South Australia, Clinical and Health Sciences, Adelaide, South Australia, Australia.

Centre for Cancer Biology, University of South Australia and SA Pathology, Adelaide, South Australia, Australia.

出版信息

J Microbiol Biol Educ. 2022 Jul 19;23(2). doi: 10.1128/jmbe.00041-22. eCollection 2022 Aug.

Abstract

Determining the antibiotic sensitivity of disease-causing microorganisms is a fundamental process in a clinical microbiology laboratory. With the continued use of antibiotics, the emergence of antibiotic resistance has become a significant health issue. However, the principles and laboratory testing to determine antibiotic sensitivity are generally not taught to first-year undergraduate students. This is partly due to the limited time to cover the fundamental biology of microorganisms and the mechanism of action of antibiotics in an introductory course. We overcame these limitations by teaching first-year students the fundamental principles of antibiotic sensitivity using an online data generator/simulation. Using the Kirby-Bauer disk diffusion test, students replicated the effects of antibiotic dose on bacterial growth and determined the antimicrobial susceptibility testing of their allocated bacterium. After 2-3 weeks, the antimicrobial sensitivity testing was replicated in an authentic face-to-face laboratory setting over 2 days. The impact of the intervention on student learning was assessed using a written laboratory report and a short questionnaire containing Likert and free-text questions. Student self-reported understanding of the content rose significantly, with nearly all students passing the written assessment. The approach was found to be enjoyable and interactive and facilitated authentic learning in first-year students. This cohort of students will continue to use more advanced versions of this simulation in future years, allowing for the long-term benefits of this approach to be assessed.

摘要

确定致病微生物的抗生素敏感性是临床微生物学实验室的一项基本操作。随着抗生素的持续使用,抗生素耐药性的出现已成为一个重大的健康问题。然而,本科一年级学生通常并未学习确定抗生素敏感性的原理和实验室检测方法。部分原因是在入门课程中,用于涵盖微生物基本生物学知识和抗生素作用机制的时间有限。我们通过使用在线数据生成器/模拟软件向一年级学生教授抗生素敏感性的基本原理,克服了这些限制。学生们通过Kirby-Bauer纸片扩散试验,重现了抗生素剂量对细菌生长的影响,并确定了他们所分配细菌的抗菌药敏试验结果。2至3周后,抗菌药敏试验在真实的面对面实验室环境中进行了为期2天的重复操作。通过书面实验室报告和一份包含李克特量表及自由文本问题的简短问卷,评估了该干预措施对学生学习的影响。学生自我报告的对内容的理解显著提高,几乎所有学生都通过了书面评估。结果发现,这种方法有趣且具有互动性,促进了一年级学生的真实学习。这批学生在未来几年将继续使用该模拟软件的更高级版本,从而能够评估这种方法的长期效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb76/9429887/2a9c50ca987f/jmbe.00041-22-f001.jpg

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