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Molecular and Cellular Biology Animations: Development and Impact on Student Learning

机译:分子和细胞生物学动画:发展和对学生学习的影响

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Educators often struggle when teaching cellular and molecular processes because typically they have only two-dimensional tools to teach something that plays out in four dimensions. Learning research has demonstrated that visualizing processes in three dimensions aids learning, and animations are effective visualization tools for novice learners and aid with long-term memory retention. The World Wide Web Instructional Committee at North Dakota State University has used these research results as an inspiration to develop a suite of high-quality animations of molecular and cellular processes. Currently, these animations represent transcription, translation, bacterial gene expression, messenger RNA (mRNA) processing, mRNA splicing, protein transport into an organelle, the electron transport chain, and the use of a biological gradient to drive adenosine triphosphate synthesis. These animations are integrated with an educational module that consists of First Look and Advanced Look components that feature captioned stills from the animation representing the key steps in the processes at varying levels of complexity. These animation-based educational modules are available via the World Wide Web at http://vcell.ndsu.edu/animations. An in-class research experiment demonstrated that student retention of content material was significantly better when students received a lecture coupled with the animations and then used the animation as an individual study activity.
机译:在教细胞和分子过程时,教育工作者通常会感到挣扎,因为通常他们只有二维工具来教一些可以在四个维度上发挥作用的东西。学习研究表明,在三个维度上可视化过程有助于学习,而动画是新手学习者的有效可视化工具,并有助于长期记忆。北达科他州立大学的万维网教学委员会以这些研究结果为灵感,开发了一套高质量的分子和细胞过程动画。当前,这些动画代表转录,翻译,细菌基因表达,信使RNA(mRNA)加工,mRNA剪接,蛋白质转运至细胞器,电子转运链,以及使用生物梯度来驱动三磷酸腺苷合成。这些动画与教育模块集成在一起,该模块由“初看起来”和“高级外观”组件组成,这些组件具有来自动画的带字幕的静止图像,这些静止图像代表了复杂程度不同的过程中的关键步骤。这些基于动画的教育模块可通过以下网址获得:http://vcell.ndsu.edu/animations。一项课堂研究实验表明,当学生接受带有动画的讲座并随后将动画用作个人学习活动时,学生对内容材料的保留显着提高。

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