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A Student Team in a University of Michigan Biomedical Engineering Design Course Constructs a Microfluidic Bioreactor for Studies of Zebrafish Development

机译:密歇根大学生物医学工程设计课程的学生团队构建了用于斑马鱼发育研究的微流控生物反应器

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摘要

The zebrafish is a valuable model for teaching developmental, molecular, and cell biology; aquatic sciences; comparative anatomy; physiology; and genetics. Here we demonstrate that zebrafish provide an excellent model system to teach engineering principles. A seven-member undergraduate team in a biomedical engineering class designed, built, and tested a zebrafish microfluidic bioreactor applying microfluidics, an emerging engineering technology, to study zebrafish development. During the semester, students learned engineering and biology experimental design, chip microfabrication, mathematical modeling, zebrafish husbandry, principles of developmental biology, fluid dynamics, microscopy, and basic molecular biology theory and techniques. The team worked to maximize each person's contribution and presented weekly written and oral reports. Two postdoctoral fellows, a graduate student, and three faculty instructors coordinated and directed the team in an optimal blending of engineering, molecular, and developmental biology skill sets. The students presented two posters, including one at the Zebrafish meetings in Madison, Wisconsin (June 2008).
机译:斑马鱼是教授发育,分子和细胞生物学的有价值的模型。水生科学;比较解剖生理;和遗传学。在这里,我们证明了斑马鱼提供了一个出色的模型系统来教授工程原理。生物医学工程课上的一个由七人组成的本科团队设计,制造和测试了一种斑马鱼微流生物反应器,该反应器应用了微流体技术(一种新兴的工程技术)来研究斑马鱼的发育。在本学期中,学生学习了工程和生物学实验设计,芯片微制造,数学建模,斑马鱼饲养,发育生物学原理,流体动力学,显微镜以及基本分子生物学理论和技术。该团队努力使每个人的贡献最大化,并每周提交书面和口头报告。两名博士后研究员,一名研究生和三名教职员工协调并指导了该团队,以实现工程,分子和发育生物学技能的最佳融合。学生们展示了两张海报,其中一张在威斯康星州麦迪逊市的斑马鱼会议上(2008年6月)。

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