通过模拟技术和混合教学加强复杂生物工艺学习:大学教育案例研究。

IF 1.2 4区 教育学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemistry and Molecular Biology Education Pub Date : 2024-05-06 DOI:10.1002/bmb.21838
Davor Cotoras
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引用次数: 0

摘要

在大学教育中使用计算机模拟器,为学生提供实际接触工业生物过程的机会,这种做法正逐渐被接受。与传统实验室实验相比,生物反应器计算机模拟器具有各种优势,如成本效益高和安全性更高。研究目的是评估将生物反应器计算机模拟器融入混合教学的效果,以促进积极的协作式学习体验,并评估其对学生参与和理解的影响。在为生物化学专业学生开设的《工业生物工艺》课程中,实施了同步、面对面和在线教学相结合的混合教学策略,以加强教学过程。使用了模拟软件 BIOSTAT®T Yeast。该软件模拟了批量培养酿酒酵母生产乙醇的过程,并确定了生物反应器的 kLa 值。在第一个模拟活动中,学生根据教师输入的参数值分析软件的反应;而在第二个模拟活动中,学生在教师的主要监督下自主使用计算机模拟器。调查结果表明,这一教学创新得到了学生的积极响应,极大地激发了他们的学习动力。比较两种模拟活动的学生满意度调查表明,通过模拟技术培养学生的自主性和参与性,可以提高生物过程教育的满意度和学习效果。
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Enhancing complex bioprocess learning through simulation technology and hybrid teaching: A case study in university education.

The utilization of computer simulators in university education is progressively being embraced to offer students a practical exposure to industrial bioprocesses. Bioreactor computer simulators hold various advantages over conventional laboratory experiments, such as cost-effectiveness and enhanced safety. The research objective is to assess the effectiveness of integrating bioreactor computer simulators into hybrid teaching to promote active and collaborative learning experiences and evaluate their impact on student participation and understanding. A hybrid strategy combining synchronous, face-to-face, and online teaching has been implemented to enhance the teaching-learning processes in the Industrial Bioprocesses course for Biochemistry students. The simulation software BIOSTAT®T Yeast was used. This software models the production of ethanol with Saccharomyces cerevisiae through batch cultivation and the determination of the kLa value of a bioreactor. In the first simulation activity, students analyzed the software response based on parameter values input by the instructor, while in the second simulation activity, students autonomously used the computer simulator under the primary oversight of the instructor. The survey results indicate that the pedagogical innovation was positively received and significantly motivating for the students. Comparing student satisfaction surveys between the two simulation activities suggests that fostering student autonomy and engagement through simulation technology can improve satisfaction and learning outcomes in bioprocess education.

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来源期刊
Biochemistry and Molecular Biology Education
Biochemistry and Molecular Biology Education 生物-生化与分子生物学
CiteScore
2.60
自引率
14.30%
发文量
99
审稿时长
6-12 weeks
期刊介绍: The aim of BAMBED is to enhance teacher preparation and student learning in Biochemistry, Molecular Biology, and related sciences such as Biophysics and Cell Biology, by promoting the world-wide dissemination of educational materials. BAMBED seeks and communicates articles on many topics, including: Innovative techniques in teaching and learning. New pedagogical approaches. Research in biochemistry and molecular biology education. Reviews on emerging areas of Biochemistry and Molecular Biology to provide background for the preparation of lectures, seminars, student presentations, dissertations, etc. Historical Reviews describing "Paths to Discovery". Novel and proven laboratory experiments that have both skill-building and discovery-based characteristics. Reviews of relevant textbooks, software, and websites. Descriptions of software for educational use. Descriptions of multimedia materials such as tutorials on various aspects of biochemistry and molecular biology.
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