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A Simulator-Assisted Workshop for Teaching Chemostat Cultivation in Academic Classes on Microbial Physiology ?

机译:在微生物生理学学术课程中教授化学昆虫培养的模拟器辅助研讨会?

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Understanding microbial growth and metabolism is a key learning objective of microbiology and biotechnology courses, essential for understanding microbial ecology, microbial biotechnology and medical microbiology. Chemostat cultivation, a key research tool in microbial physiology that enables quantitative analysis of growth and metabolism under tightly defined conditions, provides a powerful platform to teach key features of microbial growth and metabolism. Substrate-limited chemostat cultivation can be mathematically described by four equations. These encompass mass balances for biomass and substrate, an empirical relation that describes distribution of consumed substrate over growth and maintenance energy requirements (Pirt equation), and a Monod-type equation that describes the relation between substrate concentration and substrate-consumption rate. The authors felt that the abstract nature of these mathematical equations and a lack of visualization contributed to a suboptimal operative understanding of quantitative microbial physiology among students who followed their Microbial Physiology B.Sc. courses. The studio-classroom workshop presented here was developed to improve student understanding of quantitative physiology by a set of question-guided simulations. Simulations are run on Chemostatus, a specially developed MATLAB-based program, which visualizes key parameters of simulated chemostat cultures as they proceed from dynamic growth conditions to steady state. In practice, the workshop stimulated active discussion between students and with their teachers. Moreover, its introduction coincided with increased average exam scores for questions on quantitative microbial physiology. The workshop can be easily implemented in formal microbial physiology courses or used by individuals seeking to test and improve their understanding of quantitative microbial physiology and/or chemostat cultivation.
机译:了解微生物的生长和代谢是微生物学和生物技术课程的关键学习目标,对于理解微生物生态学,微生物生物技术和医学微生物学至关重要。化学恒等培养法是微生物生理学的重要研究工具,能够在严格定义的条件下定量分析生长和代谢,它提供了一个强大的平台来教授微生物生长和代谢的关键特征。底物有限的恒化细菌培养可以用四个方程式进行数学描述。这些包括生物质和底物的质量平衡,描述消耗的底物在生长和维持能量需求上的分布的经验关系(Pirt方程),以及描述底物浓度与底物消耗速率之间关系的Monod型方程。作者认为,这些数学方程式的抽象性质以及缺乏可视化的特性导致了对遵循微生物生理学学士学位的学生进行定量微生物生理学的次优操作理解。课程。这里提出的工作室教室研讨会是通过一组以问题为指导的模拟来提高学生对定量生理学的理解的。仿真是在Chemostatus上运行的,Chemostatus是基于MATLAB的专门开发的程序,可在从动态生长条件到稳态的过程中可视化模拟的Chemostat培养的关键参数。在实践中,研讨会激发了学生之间及其与老师之间的积极讨论。此外,它的引入与有关定量微生物生理学问题的平均考试成绩提高了同时。该讲习班可以在正式的微生物生理学课程中轻松实施,也可以由寻求测试和提高其对定量微生物生理学和/或化学恒温器培养的了解的个人使用。

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