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Olivia Thompson-Tinsley; Yawen Li – Biomedical Engineering Education, 2022
Various studies have shown the need for and importance of inclusion in an undergraduate student's campus experience, academic success and career development. The Biomedical Engineering (BME) Department organizes monthly department events, such as open house, internship and career workshops, Lunch and Learn with employers, and holiday parties.…
Descriptors: Inclusion, Peer Relationship, Mentors, Undergraduate Students
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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
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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
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Bienen, Leslie; Crespo, Carlos J.; Keller, Thomas E.; Weinstein, Alexandra R. – Journal of Research Administration, 2018
The National Institutes of Health (NIH) established the Building University Infrastructure Leading to Diversity (BUILD) initiative to increase engagement and retention of undergraduates from diverse backgrounds in biomedical research. Portland State University, in partnership with ten other academic institutions, received a BUILD award and…
Descriptors: Capacity Building, Pilot Projects, Biomedicine, Undergraduate Students
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Redman, Barbara K.; Caplan, Arthur L. – Research Ethics, 2015
The proportion of research misconduct cases among trainees in the biomedical sciences has risen, raising the question of why, and what are the responsibilities of research administrators and the research community to address this problem. Although there is no definitive research about causes, for trainees the relationship with a research mentor…
Descriptors: Ethics, Biomedicine, Researchers, Administrator Role
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Naomi Lee; Alfreda Nelson; Vanessa Svihla – International Journal of Designs for Learning, 2018
Literature shows that students who enter the science, technology, engineering, mathematics, and medical-related (STEMM) pipeline at earlier stages of their career are more likely to be successful. This is especially true for underrepresented and economically disadvantaged students. Despite the increasing number of students entering the pipeline,…
Descriptors: Biomedicine, American Indian Students, Alaska Natives, Ethnic Groups
Cooper, Kenneth J. – Diverse: Issues in Higher Education, 2012
Stacyann Morgan got into biomedical engineering through a simple Google search. She got through an undergraduate program in the emerging field thanks to a federally-funded program that provided multi-layered support to Black and Latino students at City College of New York. Starting in 2001, the National Institutes of Health funded the Minority…
Descriptors: Minority Group Students, Engineering, Biomedicine, Doctoral Programs
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Chester, Ann; Dooley, Elizabeth – Journal of Higher Education Outreach and Engagement, 2011
This article describes the Health Sciences and Technology Academy, an outreach and engagement program by West Virginia University to encourage higher education faculty members and administrators, public school teachers, and community leaders to assume the responsibility of mentoring high school students. The primary goal is to increase the college…
Descriptors: Community Leaders, Higher Education, Public School Teachers, Leadership
Reichert, William M. – Liberal Education, 2006
There are various ways to succeed in recruiting and retaining underrepresented minority (URM) doctoral students; but key to them all is the creation of real student-faculty relationships, which demonstrate by example that diversity and excellence can and should coexist. This cannot be delegated or done indirectly, and no amount of outreach, campus…
Descriptors: Graduate Students, Grants, Student Recruitment, Engineering
Smith, Elske – 1990
The Minority High School Student Research Apprentice Program in Richmond, Virginia, aspires to stimulate among minority high school students an interest in pursuing careers in biomedical research and the health professions. Students are paid hourly wages commensurate with what they could earn at summer jobs. Students work with faculty mentors in…
Descriptors: Apprenticeships, Biomedicine, Career Exploration, Compensation (Remuneration)
Barisa, Mark T.; Holland, Carolyn – 1993
Results of surveys and studies suggest that too few African-American and female students aspire to and achieve doctoral degrees in biological sciences. It has also been suggested that gender and racial inequities exist in teaching and research faculties in higher education, especially in the biomedical sciences. Thus, few role models are available…
Descriptors: Biological Sciences, Biomedicine, Black Students, Enrichment Activities
McGee, Rick; Cody, Heather Heim – Winds of Change, 1995
Describes the Mayo Minority Scholars Program, which helps American Indian and other minority students become doctors, medical faculty, or biomedical researchers by matching them with appropriate mentors. Relates the authors' perspectives and experiences as mentor and student. Includes program and contact information. (JAT)
Descriptors: American Indian Education, American Indians, Biomedicine, College Students
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Lewis, Jennifer R.; Kotur, Mark S.; Butt, Omar; Kulcarni, Sumant; Riley, Alyssa A.; Ferrell, Nick; Sullivan, Kathryn D.; Ferrari, Mauro – Cell Biology Education, 2002
The purpose of this article is to discuss "small-group apprenticeships (SGAs)" as a method to instruct cell culture techniques to high school participants. The study aimed to teach cell culture practices and to introduce advanced imaging techniques to solve various biomedical engineering problems. Participants designed and completed experiments…
Descriptors: Science Instruction, Secondary School Science, High School Students, Science Experiments