Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, Tennessee, United States.
Department of Internal Medicine, University of Iowa, Iowa City, Iowa, United States.
Adv Physiol Educ. 2023 Dec 1;47(4):823-830. doi: 10.1152/advan.00116.2023. Epub 2023 Aug 31.
There remains a clear deficiency in recruiting middle school students in science, technology, engineering, mathematics, and medicine fields, especially for those students entering physiology from underrepresented backgrounds. A large part of this may be arising from a disconnect between how science is typically practiced at a collegiate and K-12 level. Here, we have envisioned mitochondria and their diverse subcellular structures as an involver for middle school students. We present the framework for a workshop that familiarizes students with mitochondria, employing three-dimensional visual-spatial learning and real-time critical thinking and hypothesis forming. This workshop had the goal of familiarizing middle school students with the unique challenges the field currently faces and better understanding the actuality of being a scientist through critical analysis including hypothesis forming. Findings show that middle school students responded positively to the program and felt as though they had a better understanding of mitochondria. Future implications for hands-on programs to involve underrepresented students in science are discussed, as well as potential considerations to adapt it for high school and undergraduate students. Here we employ a workshop that utilizes blended and tactile learning to teach middle schoolers about mitochondrial structure. By creating an approachable and fun workshop that can be utilized for middle school students, we seek to encourage them to join a career in physiology.
在招募中学生从事科学、技术、工程、数学和医学领域的工作方面仍然存在明显的不足,特别是对于那些来自代表性不足背景的学生进入生理学领域的情况。造成这种情况的很大一部分原因可能是大学和 K-12 阶段的科学实践方式之间存在脱节。在这里,我们将线粒体及其多样化的亚细胞结构视为中学生参与的一个因素。我们提出了一个工作坊的框架,使学生熟悉线粒体,采用三维视觉空间学习和实时批判性思维和假设形成。该工作坊的目标是让中学生熟悉该领域目前面临的独特挑战,并通过批判性分析(包括假设形成)更好地了解成为科学家的实际情况。研究结果表明,中学生对该项目反应积极,他们感觉自己对线粒体有了更好的理解。讨论了涉及代表性不足的学生参与科学的实践计划的未来影响,以及为高中和本科生改编它的潜在考虑因素。在这里,我们利用混合和触觉学习为中学生教授线粒体结构。通过创建一个易于接近和有趣的工作坊,我们可以为中学生所用,我们希望鼓励他们从事生理学方面的职业。