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A virtual experiment improved students' understanding of physiological experimental processes ahead of a live inquiry-based practical class

机译:虚拟实验提高了学生对基于实时查询的实践课程的生理实验过程的理解

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Physiology is commonly taught through direct experience and observation of scientific phenomena in "hands-on" practical laboratory classes. The value of such classes is limited by students' lack of understanding of the underlying theoretical concepts and their lack of confidence with the experimental techniques. In our experience, students follow experimental steps as if following a recipe, without giving thought to the underlying theory and the relationship between the experimental procedure and the research hypotheses. To address this issue, and to enhance student learning, we developed an online virtual experiment for students to complete before an inquiry-based practical. The virtual experiment and "live" practical laboratory were an investigation of how autonomic nerves control contractions in the isolated rabbit ileum. We hypothesized that the virtual experiment would support students' understanding of the physiological concepts, as well as the experimental design associated with the practical. Anonymous survey data and usage analytics showed that most students engaged with the virtual experiment. Students thought that it helped them to understand the practical physiological concepts and experimental design. with self-reported time spent on the virtual experiment (and not on lectures or practical class notes) a significant predictor of their understanding. This novel finding provides evidence that virtual experiments can contribute to students' research skills development. Our results indicate that self-paced online virtual experiments are an effective way to enhance student understanding of physiological concepts and experimental processes, allowing for a more realistic experience of the scientific method and a more effective use of time in practical classes.
机译:通过直接经验和观察“实践”实际实验室课程的直接经验和观察生理学。这些课程的价值受到学生对潜在理论概念的理解缺乏了解的限制,以及对实验技术缺乏信心。在我们的经验中,学生遵循实验步骤,仿佛遵循食谱,而不思考潜在的理论和实验程序与研究假设之间的关系。为了解决这个问题,并加强学生学习,我们开发了一个在线虚拟实验,为学生完成了在询问的实用性之前完成。虚拟实验和“生活”实验室是对自主神经控制孤立兔回肠中的自主神经的调查。我们假设虚拟实验将支持学生对生理概念的理解,以及与实际相关的实验设计。匿名调查数据和使用分析显示,大多数学生与虚拟实验进行了从事。学生认为它帮助他们了解实际的生理概念和实验设计。随着自我报告的时间在虚拟实验上花在虚拟实验上(讲座或实际课堂笔记)的理解是一个重要的预测因素。这部小说发现提供了虚拟实验可以促进学生的研究技能发展的证据。我们的结果表明,自定节定的在线虚拟实验是增强学生对生理概念和实验过程的理解的有效途径,允许更加现实地体验科学方法和更有效地利用实际课程的时间。

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