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Steven Higbee; Devany Harrell; Anthony Chase; Sharon Miller – Biomedical Engineering Education, 2025
Purpose: Engineering students gain confidence and competency through continual practice of key skills. The social cognitive theory construct of self-efficacy provides a useful measure to assess students' beliefs in their ability to succeed or perform tasks. Research focused on the impacts of curricular engineering design experiences on student…
Descriptors: Biomedicine, Engineering Education, Undergraduate Students, Self Efficacy
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
T. Claire Davies; Jesse Manzin; Maya Meraw; Deborah S. Munro – Biomedical Engineering Education, 2023
As students gain more experience with design concepts, they should progress from novice to expert design thinkers. The purpose of this research was to identify the constructs of growth in design thinking (DT) over short- (one weekend) and long-term (10 weeks) design challenges. A DT mindset questionnaire was completed by students in a third-year…
Descriptors: Biomedicine, Engineering Education, Design, Thinking Skills
Ruben D. Lopez-Parra; Tamara J. Moore – Biomedical Engineering Education, 2024
The design of biological systems is a multidisciplinary activity in which biomedical engineers collaborate to build novel biological systems that address society's needs. One of the most relevant skills for designing biological systems is engineering systems thinking (EST). Among the EST elements, the EST cognitive competencies are comparatively…
Descriptors: Undergraduate Students, Biology, Thinking Skills, Design
Justyn Jaworski; Michael Cho – Biomedical Engineering Education, 2023
The unique characteristics of the training needed for today's biomedical engineers can represent a challenge in curriculum design. Practical experiential learning for biomedical engineering undergraduates is important to prevent under-developed professional skills. In this teaching tips article, we provide an example of how to incorporate…
Descriptors: Curriculum Implementation, Experiential Learning, Service Learning, Biomedicine
Rucha Joshi; Sujoy Ghosh; Alexander Simileysky; Mayank Bhanot – Biomedical Engineering Education, 2021
With a motivation to immerse students in engineering design, graphics communication, and computer aided design (CAD) skills early-on in the biomedical engineering curriculum, we launched a new 2-unit laboratory course on "Graphics Design in BME" in the Spring 2020 quarter for UC Davis sophomores. Due to the COVID-19 pandemic, the course…
Descriptors: Formative Evaluation, Biomedicine, Laboratories, Design
Kay C. Dee – Biomedical Engineering Education, 2021
During the spring of 2020, due to the COVID-19 pandemic, it was necessary to rapidly translate a new human-centered design studio course for first-year biomedical engineering students from a face-to-face delivery mode to a remote delivery mode. In addition to disrupting plans for hands-on design prototyping experiences, stay-at-home orders…
Descriptors: Undergraduate Students, College Freshmen, Biomedicine, Engineering Education
Panebianco, Christopher J.; Iatridis, James C.; Weiser, Jennifer R. – Chemical Engineering Education, 2022
Due to the COVID-19 pandemic, many universities have switched to online learning platforms, which inhibits engineering students from completing formative hands-on experiments. To address this, we developed at-home experiments for an undergraduate biomaterials course. These inquiry-based learning experiments were well received by students and…
Descriptors: COVID-19, Pandemics, Inquiry, Laboratory Experiments
Elaissa T. Hardy; Sara Ivey Fulmer; Joseph M. Le Doux; Wilbur A. Lam – Biomedical Engineering Education, 2022
BME HealthReach is an educational outreach program where undergraduate BME students participate in an out-of-class design thinking course to create and teach interactive STEM activities to K-12 students, where children with chronic illnesses are the primary clients. We detail research that seeks to answer the following: (1) what impact does this…
Descriptors: Undergraduate Students, Design, Systems Approach, Elementary Secondary Education
Farrar, Emily J. – IEEE Transactions on Education, 2020
Contribution: This article illustrates how to design and implement a Design Thinking project in a biomedical instrumentation course as a bridge between education and industry. It also presents the effect of the project on student perceptions of their learning gains and their postgraduate preparedness. Background: Biomedical engineering continues…
Descriptors: Design, Biomedicine, Industry, Education Work Relationship
Qureshi, Saad – Journal of Biological Education, 2022
Biomimicry is a useful method to develop students' skills, such as design and systems thinking, particularly when complemented with inquiry-based learning. The research seeks to uncover how students engage in the biomimicry process and what types of designs they produce to reveal insights that could assist educators in teaching biomimicry. A study…
Descriptors: Biology, Science Instruction, Biomedicine, Engineering
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
Krause, Liesl A.; Strimel, Greg J.; Rispoli, Joseph – Technology and Engineering Teacher, 2018
Broadening participation in STEM education programs and boosting the STEM workforce, specifically increasing interest in engineering, has been a growing focus of the U.S. education system (Lawrence & Mancus, 2012; Strimel, Grubbs, & Wells, 2017). The Bureau of Labor Statistics projects overall STEM employment to grow by 8.9% from 2014 to…
Descriptors: Biomedicine, Engineering, Engineering Education, Social Responsibility