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Lyn Denend; Ross Venook; Ravinder D. Pamnani; Kunj Sheth; Joseph Towles – Biomedical Engineering Education, 2024
In design-oriented biomedical engineering courses, some instructors teach need-driven methods for health technology innovation that use a "need statement" to reflect a student team's hypothesis about the most fruitful direction for their project. While need statements are of the utmost importance to the projects, we were not aware of any…
Descriptors: Scoring Rubrics, Biomedicine, Engineering Education, Student Projects
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
Jessica L. S. Zylla; Alain B. Bomgni; Rajesh K. Sani; Mahadevan Subramaniam; Carol Lushbough; Robb Winter; Venkataramana R. Gadhamshetty; Parvathi Chundi; Etienne Z. Gnimpieba – Biomedical Engineering Education, 2024
Historically, research disciplines have successfully operated independently. However, the emergence of transdisciplinary research has led to convergence methodologies, resulting in groundbreaking discoveries. Despite the benefits, graduate programs face challenges in implementing transdisciplinary research and preparing students for real-world…
Descriptors: Research Methodology, Interdisciplinary Approach, Active Learning, Student Projects
Joan E. Adamo; Erin L. Keegan; John W. Boger; Amy L. Lerner – Biomedical Engineering Education, 2024
Successful translation of medical devices requires a clear pathway through the business environment, including regulatory obligations and the protection of intellectual property. Introducing these topics can be challenging for biomedical engineering programs, as students prefer hands-on activities and retain concepts best when directly applied to…
Descriptors: Biomedicine, Engineering Education, Equipment, Medical Services
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
Isabel Miller; Sara Lamer; Aidan Brougham-Cook; Karin J. Jensen; Holly M. Golecki – Biomedical Engineering Education, 2022
Mental health challenges have been rising across college campuses. To destigmatize wellness practices and promote student mental health, we present a novel technical project in an introductory bioengineering course that explores stress management techniques through physiology, biosensors, and design. We hypothesize that if students measure…
Descriptors: Equipment, Biology, Engineering Education, Mental Health
Padraic Casserly; Ademola Dare; Joy Onuh; Williams Baah; Ashley Taylor – Biomedical Engineering Education, 2024
Amidst the dual challenges of an eight-month university closure from nationwide public university strikes in Nigeria and the lingering impacts of the COVID-19 pandemic, we needed to innovate the delivery of BME graduate curriculum to ensure graduate students continued to progress in their studies. To ensure BME graduate students were engaging in…
Descriptors: Biomedicine, Engineering Education, Video Technology, Lecture Method
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
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
Eileen Haase – Biomedical Engineering Education, 2021
Team projects and in-class interactions are the hallmark of a freshmen introductory course in biomedical engineering (BME). Our challenge was to continue team activities, mentoring, and the semester-long design project in a virtual environment after in-person classes ended due to the COVID-19 pandemic. This paper highlights some of the adaptations…
Descriptors: Teamwork, College Freshmen, Biomedicine, Engineering Education