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Jamie Mak – ProQuest LLC, 2024
Faculty are central to higher education and workforce development. Recent significant disruptions including the pandemic, student demographic shifts, and technology advancements in artificial intelligence are challenging faculty member's status quo in their teaching and research practices. Faculty members will need to actively engage in…
Descriptors: Transformative Learning, Faculty Development, Biomedicine, College Faculty
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David Vannier; Beverly Torok-Storb; Shelley Stromholt; Jeanne Ting Chowning – Journal of STEM Outreach, 2023
The Pathways Undergraduate Researchers Program is a paid, nine-week summer internship at the Fred Hutchinson Cancer Center. It targets rising first-, second-, and third-year college students from backgrounds underrepresented in biomedical research. This paper describes how the internship impacted students' awareness of biomedical careers,…
Descriptors: Science Education, Undergraduate Students, Biomedicine, Internship Programs
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Samuel A. Acuña – Biomedical Engineering Education, 2024
Should your department offer a course on how to be a scientist and a successful graduate student? We offer this course at George Mason University as a mandatory part of the graduate curriculum, but this is not common practice for graduate biomedical engineering programs. Graduate education in biomedical engineering is evolving rapidly, with an…
Descriptors: Biomedicine, Engineering Education, Graduate Students, Courses
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Marissa Gray; Jennifer R. Amos; Soraya Bailey; K. Jane Grande-Allen; Celinda Kofron; Sabriya Stukes – Biomedical Engineering Education, 2024
Authored by six current and former Biomedical Engineering (BME) Master's Program Directors, this article aims to summarize the types of BME master's programs that are offered in the U.S., delve into the value of BME master's programs, and reveal concerns of BME master's students and directors that are exacerbated among international and…
Descriptors: Biomedicine, Masters Programs, Engineering Education, Student Attitudes
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Holly M. Golecki; Jason Robinson; Caroline Cvetkovic; Conor Walsh – Biomedical Engineering Education, 2024
Experiential learning in biomedical engineering curricula is a critical component to developing graduates who are equipped to contribute to technical design tasks in their careers. This paper presents the development and implementation of an undergraduate and graduate-level soft material robotics design course focused on applications in medical…
Descriptors: Equipment, Design, Robotics, Experiential Learning
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Lacy White; Mae Lewis; Marialice Mastronardi; Maura Borrego; H. Grady Rylander III; Mia K. Markey – Biomedical Engineering Education, 2022
We describe our experiences with the first offering of a new program, BMEntored, for supporting first-year doctoral students in Biomedical Engineering (BME) during their first semester. The goal of BMEntored was to enhance the first-semester experience of first-year doctoral students in BME with an emphasis on guiding students in selecting a…
Descriptors: Biomedicine, Doctoral Programs, Student Experience, Supervisors
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Suzanne Lightsey; Michele Dill; Madison Temples; Taylor Yeater; Sarah Furtney – Biomedical Engineering Education, 2024
Hands-on laboratory courses seldom appear in biomedical engineering (BME) graduate programs, thus limiting graduate students' ability to acquire wet laboratory skills like cell culturing. At large, BME graduate programs rely on ad hoc training provided by senior graduate students; however, this method cannot be extended to new or non-BME…
Descriptors: Graduate Students, Engineering Education, Biomedicine, Cooperative Learning
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Wendy Y. Carter-Veale; Robin H. Cresiski; Gwen Sharp; Jordan D. Lankford; Fadel Ugarte – New Directions for Higher Education, 2024
Though increasing numbers of racially and ethnically minoritized (REM) individuals earn PhDs and national initiatives focus on faculty diversity, challenges persist in recruiting, hiring, and retaining REM faculty. While a pervasive issue nationally, the literature predominantly focuses on faculty diversity at research-intensive institutions. This…
Descriptors: Readiness, Minority Group Teachers, Faculty, Departments
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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
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Cathelijne M. Reincke; Annelies Pieterman-Bos; Marc H. W. van Mil – International Journal of Science Education, Part B: Communication and Public Engagement, 2024
In this paper, we present recommendations for integrating science communication training into undergraduate science curricula. Science communication training is increasingly acknowledged as an important element of science education. It is essential to introduce this training early in academic development, ideally at the undergraduate level. The…
Descriptors: Foreign Countries, Undergraduate Students, Science Education, Biomedicine
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Katherine R. Moravec; Emily L. Lothamer; Amy Hoene; P. Mike Wagoner; Daniel J. Beckman; Craig J. Goergen – Biomedical Engineering Education, 2023
Many biomedical engineering degree programs lack substantial immersive clinical experiences for undergraduate students, creating a need for clinical immersion programs that contribute to training objectives that emphasize current clinical needs (Becker in Eur J Eng Educ 31:261-272, 2006; Davis et al. in J Eng Educ 91:211-221, 2002; Dym et al. in J…
Descriptors: Clinical Experience, Biomedicine, Undergraduate Students, Program Development
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Ralph A. Gigliotti; Brent D. Ruben; Christine Goldthwaite; Brian L. Strom – International Journal of Leadership in Education, 2024
The challenges facing academic health and medicine are abundant and require effective leadership across institutions. This article highlights the design of a collaborative leadership development program for faculty administrators that seeks to address many of these leadership challenges. The article begins with an overview of existing research to…
Descriptors: Instructional Leadership, Teacher Leadership, Leadership Training, College Administration
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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
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C. B. Moelans; J. J. Geerling; R. D. Radersma; M. J. Moons; P. J. van Diest; M. F. van der Schaaf – Biochemistry and Molecular Biology Education, 2024
Laboratory e-learning support tools can assist students' learning while preparing for laboratory classes. To successfully work in such virtual experimental environments (VEEs) outside class, students require self-regulated learning (SRL) skills. A deeper understanding of the continuous reciprocal interactions between SRL, satisfaction, and online…
Descriptors: Science Laboratories, Electronic Learning, Educational Technology, Self Management
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Isabel Miller; Grisel Lopez-Alvarez; M. Teresa Cardador; Karin J. Jensen – Biomedical Engineering Education, 2024
Biomedical engineering is a broad and interdisciplinary field that prepares graduates for a variety of careers across multiple career sectors. Given this breadth, undergraduate degree programs often have formal or informal opportunities for students to further specialize within the biomedical engineering major to develop skills in subdisciplines…
Descriptors: Career Choice, Decision Making, Biomedicine, Engineering Education
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