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Penelope Georges; Sami Kahn – Biomedical Engineering Education, 2025
Rapid advancements in bioengineering call for broad public literacy to help individuals better understand the changes these technologies bring to our lives. However, making bioengineering concepts accessible and relevant, especially to non-science majors, is often challenging. To address this challenge, we designed a general education course aimed…
Descriptors: Biology, Engineering, Engineering Education, Teaching Methods
May M. Mansy; Pavlo Antonenko; Walter Lee Murfee; Sarah C. Furtney; Christine Davis; Sujata Krishna; Brianna Pawlyshyn; Natalie Thurlow; Jean-Pierre Pierantoni – Biomedical Engineering Education, 2024
The Learning Assistant (LA) model trains undergraduate student leaders to enhance student learning and engagement by supporting the classroom with research-based instructional strategies. Many disciplines in the life sciences that implemented the LA model reported increased learning gains and decreased performance gaps. However, the model is…
Descriptors: Undergraduate Students, Teaching Methods, Evidence Based Practice, Biomedicine
Marissa L. Gray; Celinda M. Kofron – Biomedical Engineering Education, 2024
We have implemented a jigsaw framework in our biomedical engineering capstone design course by overlaying strategic consideration groups across our design teams. Collaboration in design courses is usually focused within a design team with some peer feedback, but opportunities to work across teams are often limited. The purpose of this teaching tip…
Descriptors: Biomedicine, Design, Cooperative Learning, Engineering Education
Sara Schley; Mel Chua; Joseph Le Doux; Veronica van Montfrans; Todd Fernandez – Biomedical Engineering Education, 2023
Human bodies vary widely: height, weight, blood volume, handedness, strength, and variations from disabilities, trauma, genetics, etc. Engineers must be trained to include human variance when designing human-interactive systems. Typically, this is not incorporated into mathematical and modeling focused courses. In the spring of 2019, one of three…
Descriptors: Human Body, Biomechanics, Cooperative Learning, Problem Solving
Noah Goshi; Gregory Girardi; Hyehyun Kim; Erkin Seker – Biomedical Engineering Education, 2023
There is a need for novel teaching approaches to train biomedical engineers that are conversant across disciplines and have the technical skills to address interdisciplinary scientific and technological challenges. Here, we describe a graduate-level miniaturized biomedical device engineering course that has been taught over the last decade in…
Descriptors: Experiential Learning, Biomedicine, Equipment, Teaching Methods
Sonia Bansal; Aaron M. Kyle; Andrew O. Brightman; Jennifer R. Amos – Biomedical Engineering Education, 2023
The lack of diversity in engineering is a persistent problem with few signs of pending improvement. Efforts to promote diversity in engineering schools have produced modest gains. Based on a commitment to be a change leader and fueled by recent updates in ABET criteria to include diversity, equity, inclusion, and justice (DEI-J) as tenets of…
Descriptors: Engineering Education, Student Diversity, Biomedicine, Inclusion
David A. Rubenstein – Biomedical Engineering Education, 2024
Biomedical engineering (BME) undergraduate curricula have begun to address gaps in diversity, especially in response to the newly proposed ABET diversity, equity, and inclusion (DEI) criteria. However, there is a significant lack of teaching resources, and pedagogical training available for those interested in including DEI into their course…
Descriptors: Biomedicine, Engineering Education, Undergraduate Study, Diversity
Jasmine Naik; Anna Grosberg; Christine King – Biomedical Engineering Education, 2023
In this paper, we altered an in-person high school tissue engineering program to create a virtual course. Through this alteration, we aimed to show that online programs can still be engaging and at the same time provide greater accessibility and flexibility to students. This was achieved through utilizing Google classroom as a virtual platform for…
Descriptors: Teaching Methods, High School Students, In Person Learning, Online Courses
Meagan E. Ita; Gönül Z. Kaletunç; Katelyn E. Swindle-Reilly – Biomedical Engineering Education, 2023
Entrepreneurial minded learning (EML) is a pedagogical technique that gives students the tools to identify opportunities, focus on impact, and to create value through their solutions. The entrepreneurial mindset builds upon three key elements: curiosity, connections, and creating value (3 Cs). A biomedical engineering course was developed using…
Descriptors: Entrepreneurship, Student Attitudes, Biomedicine, Engineering Education
Todd Fernandez; Joe Le Doux; Essy Behravesh – Biomedical Engineering Education, 2021
The teaching tip described here relates to a department level initiative to gather and act on student experiences in real-time during the COVID-19 outbreak in the Spring 2020 semester. The survey was developed to be an ongoing, department level, data collection source that could capture, triage, and react to student's unique situations as they…
Descriptors: COVID-19, Pandemics, Teaching Methods, Student Experience
R. Rosario; T. S. Hopper; A. Huang-Saad – Biomedical Engineering Education, 2022
There are increasing calls for the use of research-based teaching strategies to improve engagement and learning in engineering. In this innovation paper, we detail the application of research-based teaching strategies in a computer programming focused biomedical engineering module. This four-week, one-credit undergraduate biomedical engineering…
Descriptors: Undergraduate Students, Biomedicine, Engineering Education, Programming
E. K. Bucholz – Biomedical Engineering Education, 2021
In the spring of 2020, brick and mortar colleges had to abruptly adapt to the reality of COVID-19 and transition to entirely online environments in a manner of weeks. This required a rapid (< 2 weeks) acquisition of knowledge and flexibility in using technology, most commonly Zoom. Upon completion of the semester, and after debriefing with…
Descriptors: Online Courses, Educational Environment, Biomedicine, Engineering Education
James Long; Evan Dragich; Ann Saterbak – Biomedical Engineering Education, 2022
Recent advances in teaching, many of which incorporate elements of active learning, seek to provide students with learning experiences indicative of real-world problem solving. Problem-based learning (PBL) is one form of active learning that challenges students to address open-ended problems. In this work, we evaluate the efficacy of PBL in…
Descriptors: Problem Based Learning, Self Esteem, Undergraduate Students, Biomedicine
Philipp Gutruf; Urs Utzinger; Vignesh Subbian – Biomedical Engineering Education, 2021
Engineering design courses are particularly challenging to deliver in online or distance modalities because of the hands-on, collaborative nature of the design process and the need for physical resources and work spaces. In this work, we describe how we rapidly transformed two design courses in the middle two years of the biomedical engineering…
Descriptors: Engineering Education, Drafting, Design, Biomedicine
Eileen Johnson; Jeanne Sanders; Karin Jensen – Biomedical Engineering Education, 2023
Online course delivery has increased in prevalence, particularly due to the onset in 2020 of the COVID-19 pandemic. Biomedical engineering laboratory courses pose unique challenges when transitioning to a remote or hybrid space. Here, we describe a novel approach to online lab delivery to improve student learning and engagement in a required…
Descriptors: Blended Learning, Distance Education, Online Courses, Electronic Learning