帮助学生在3D中看到细菌:细胞模型增加了学生对细胞大小和扩散的学习
Emily M Wollmuth1, Alberto Correa1, Manuela Alvarado Obando1
1Department of Microbiology, Cornell University, Ithaca, New York, USA.
Journal of microbiology & biology education
|December 18, 2023
概括
用3D打印的细胞模型显著改善了学生对细菌细胞大小和微生物学的扩散的理解. 这种触觉方法增强了空间关系的可视化,以及对于营养物质运输至关重要的表面面积与体积的比率.
科学领域:
- 微生物学教育 微生物学教育
- 细胞生物学 细胞生物学
背景情况:
- 学生面临的挑战是可视化微生物细胞大小和空间关系.
- Prokaryotic 细胞大小受到营养吸收和细胞内运输的扩散限制的限制.
- 细胞需要最小的尺寸来容纳重要的组成部分,如核糖体和DNA.
研究的目的:
- 研究3D打印细胞模型在教学细菌细胞大小和表面积与体积比的有效性.
- 在入门微生物学中,提高学生对细胞尺寸生物学意义的理解.
主要方法:
- 利用微生物细胞的3D打印模型作为交互式教学工具.
- 学生们参与了模型,并在小组中讨论了概念.
- 通过课前和课后的定量和定性数据收集来评估学习收益.
主要成果:
- 在课后观察到学生实现学习目标的统计学显著改善.
- 学生对了解细菌细胞大小和扩散的信心显著增加.
- 定性数据表明,对空间关系和面积-面积-体积概念的理解得到了增强.
结论:
- 交互式3D打印细胞模型是提高学生对细菌细胞大小和扩散的理解的有效工具.
- 这种教学方法增强了微生物学中关键概念的可视化.
- 3D模型提供了一种切实的方法来解决与微生物细胞生理学相关的学习困难.
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