Petersen Sarah C
Department of Neuroscience and Department of Biology, Kenyon College, Gambier, OH 43022.
J Undergrad Neurosci Educ. 2021 Dec 24;20(1):A73-A82. eCollection 2021 Fall.
Open-ended laboratory projects increase student success and retention in the sciences. However, developing organismal-based research projects is a challenge for students with restricted laboratory access, such as those attending courses remotely. Here I describe the use of image analysis of zebrafish neural development for authentic research projects in an introductory biology laboratory course. Zebrafish are a vertebrate model that produce large numbers of externally and rapidly developing embryos. Because zebrafish larvae are transparent, fluorescent reporters marking nervous system structures can be imaged over time and analyzed by undergraduate scientists. In the pilot of this project, remote first-year college students independently developed biological questions based on an image collection comparing zebrafish mutants and wild-type siblings. Students created and mastered techniques to analyze position, organization, and other morphological features of developing neurons and glia in the images to directly test their biological questions. At the end of the course, students communicated their project results in journal article format and oral presentations. Students were able to hone skills in organismal observation and data collection while studying remotely, and they reported excitement at applying lecture-based knowledge to their own independent questions. This module can be adapted by other instructors for both students on- and off-campus to teach principles of neural development, data collection, data analysis, and scientific communication.
开放式实验室项目提高了学生在科学领域的成功率和留校率。然而,对于实验室使用受限的学生,比如那些远程上课的学生来说,开展基于生物体的研究项目是一项挑战。在此,我描述了在一门生物学基础课程的实验室中,如何利用斑马鱼神经发育的图像分析来开展真实的研究项目。斑马鱼是一种脊椎动物模型,能产出大量在体外快速发育的胚胎。由于斑马鱼幼体是透明的,标记神经系统结构的荧光报告基因可以随时间进行成像,并由本科学生科学家进行分析。在该项目的试点中,远程学习的大一学生基于一组比较斑马鱼突变体和野生型同胞的图像集,独立提出生物学问题。学生们创建并掌握了分析图像中发育神经元和神经胶质细胞的位置、组织及其他形态特征的技术,以直接检验他们提出的生物学问题。在课程结束时,学生们以期刊文章的形式和口头报告的方式交流了他们的项目成果。学生们能够在远程学习的同时磨练生物体观察和数据收集技能,并且他们表示很高兴能将课堂所学知识应用于自己独立提出的问题。其他教师可以对这个模块进行调整,供校内和校外的学生学习神经发育原理、数据收集、数据分析和科学交流。