Worms in Space for Outreach on Earth: Space Life Science Activities for the Classroom

C. Gaffney, Amelia K Pollard, C. Deane, Michael Cooke, M. Balsamo, Jennifer E. Hewitt, S. Vanapalli, N. Szewczyk, T. Etheridge, B. Phillips
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引用次数: 2

Abstract

Abstract Long term spaceflight is associated with the loss of skeletal muscle mass and function. The Molecular Muscle Experiment (MME) seeks to identify the causes of muscle decline in space and test potential therapies to attenuate this in the microscopic worm, Caenorhabditis elegans. This is the first UK-led experiment in the almost two-decade history of the International Space Station. We therefore intend to complete significant and widespread educational outreach activities to promote interest in science, technology, engineering, and math (STEM), and to increase engagement with our space life science experiment. This paper describes three education outreach activities relating to MME that are suitable for use in the classroom: (i) observing normal and mutant worms; (ii) observing the effect of unloading (simulation of microgravity); and (iii) handling spaceflight hardware. Activity packs are provided at a starter and advanced level to support these activities. This paper also provides three posters that may be used as learning resources for educators. These posters provide information on: (i) why worms are used for research; (ii) spaceflight human physiology; and (iii) the specifics of the MME. Details of further planned engagement activities are outlined to increase the awareness of the MME.
太空蠕虫拓展地球:课堂空间生命科学活动
长期的太空飞行与骨骼肌质量和功能的损失有关。分子肌肉实验(MME)旨在确定空间肌肉衰退的原因,并测试潜在的治疗方法,以减轻微观蠕虫秀丽隐杆线虫的肌肉衰退。这是国际空间站近20年历史上首次由英国主导的实验。因此,我们打算完成重要和广泛的教育外展活动,以促进对科学、技术、工程和数学(STEM)的兴趣,并增加对我们空间生命科学实验的参与。本文介绍了三种适合在课堂上使用的与微型蠕虫有关的教育推广活动:(i)观察正常蠕虫和变异蠕虫;(ii)观察卸载效果(微重力模拟);(三)处理航天硬件。活动包以初学者和高级级别提供,以支持这些活动。本文还提供了三张海报作为教育工作者的学习资源。这些海报提供了以下信息:(i)为什么使用蠕虫进行研究;(ii)航天人体生理学;以及(iii)管理机制的具体内容。为提高对管理机制的认识,我们概述了进一步规划的业务接触活动的细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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