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Showing 1 to 15 of 131 results Save | Export
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Nan Jiang; Zhongling Jiang; Yufeng Huang; Mingju Sun; Xuejing Sun; Yanjun Huan; Fangzheng Li – Anatomical Sciences Education, 2024
Veterinary anatomy plays a crucial role in the curriculum for veterinary medicine and surgery. The integration of modern information technology in veterinary education can greatly benefit from innovative tools such as augmented reality (AR) applications. The aim of this study was to develop an accurate and interactive three-dimensional (3D)…
Descriptors: Foreign Countries, Veterinary Medical Education, Anatomy, Computer Simulation
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Brown, Casey C.; Arrington, Shalynn D.; Olson, Jay F.; Finch, Charles A.; Nydam, Randall L. – Anatomical Sciences Education, 2022
Best-practice guidelines have incorporated ultrasound in diagnostic and procedural medicine. Due to this demand, the Arizona College of Osteopathic Medicine initiated a comprehensive integration of ultrasound into its first-year anatomy course attended by more than 280 students. Ultrasound workshops were developed to enhance student…
Descriptors: Human Body, Medical Services, Equipment, Independent Study
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Lorenzo-Alvarez, Rocio; Rudolphi-Solero, Teodoro; Ruiz-Gomez, Miguel J.; Sendra-Portero, Francisco – Anatomical Sciences Education, 2020
Game-based learning can have a positive impact on medical education, and virtual worlds have great potential for supporting immersive online games. It is necessary to reinforce current medical students' knowledge about radiological anatomy and radiological signs. To meet this need, the objectives of this study were: to design a competition-based…
Descriptors: Game Based Learning, Simulated Environment, Virtual Classrooms, Medical Education
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Jinga, Maria-Ruxandra; Lee, Rachel B. Y.; Chan, Kai Lok; Marway, Prabhvir S.; Nandapalan, Krishan; Rhode, Kawal; Kui, Christopher; Lee, Matthew – Anatomical Sciences Education, 2023
Three-dimensional (3D) segmentation, a process involving digitally marking anatomical structures on cross-sectional images such as computed tomography (CT), and 3D printing (3DP) are being increasingly utilized in medical education. Exposure to this technology within medical schools and hospitals remains limited in the United Kingdom. M3dicube UK,…
Descriptors: Computer Simulation, Computer Peripherals, Printing, Anatomy
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Cope, Janet M.; Bennett, Cynthia C.; Balilionis, Gytis; Person, Dianne M. – Anatomical Sciences Education, 2021
In 2017, Elon University became one of very few universities in the United States without a medical school to have an in-house Anatomical Gift Program (AGP). The program accepts first-person-consenting individuals only and within 2.5 years has become self-sufficient, supporting anatomy curricular needs of its physical therapy, physician assistant,…
Descriptors: Donors, Human Body, Death, Universities
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Brian J. Goldberg; Christopher Ferrigno; Sabrina F. Schundler; Eric S. Norrell; Leah Fox; Sabrina Woods; Adam B. Wilson – Anatomical Sciences Education, 2024
This study summarizes employment benefits from across 155 U.S. allopathic medical schools, investigates differences in employment benefits according to institutional characteristics, and explores possible connections between employment benefits and institutional wealth. Employment benefits data were extracted from institutions' websites across…
Descriptors: Fringe Benefits, Medical Schools, Institutional Characteristics, Medical School Faculty
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Schaefer, Audra F.; Wilson, Adam B.; Barger, J. Bradley; Azim, Homaira M.; Brokaw, James J.; Brooks, William S. – Anatomical Sciences Education, 2019
Anatomical sciences are foundational to the health professions, yet little is known about the qualifications of anatomy educators at the graduate and professional level in the United States. Moreover, there is concern that the number of qualified anatomy educators being trained may be insufficient to meet the growing demand posed by new and…
Descriptors: Anatomy, Science Teachers, College Faculty, Teacher Qualifications
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McBride, Jennifer M.; Drake, Richard L. – Anatomical Sciences Education, 2015
The education of future health care professionals must involve activities where interprofessional collaboration and the functioning of interdisciplinary teams are the goals and not the exceptions. This type of interprofessional education (IPE) will benefit students as they will be better able to communicate with and mobilize the skills of other…
Descriptors: Medical Students, Student Attitudes, Medical Education, Interdisciplinary Approach
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Heisler, Christine Aminda – Anatomical Sciences Education, 2011
Medical education underwent standardization at the turn of the 20th century and remained fairly consistent until recently. Incorporation of a patient-centered or case-based curriculum is believed to reinforce basic science concepts. One negative aspect is a reduction in hours spent with cadaveric dissection in the gross anatomy laboratory. For…
Descriptors: Medical Education, Academic Standards, Knowledge Level, Anatomy
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Niedermair, Julian F.; Antipova, Veronica; Manhal, Simone; Siwetz, Martin; Wimmer-Röll, Monika; Hammer, Niels; Fellner, Franz A. – Anatomical Sciences Education, 2023
Technological approaches deploying three-dimensional visualization to integrate virtual anatomy are increasingly used to provide medical students with state-of-the-art teaching. It is unclear to date to which extent virtual anatomy may help replace the dissection course. Medical students of Johannes Kepler University attend both a dissection and a…
Descriptors: Anatomy, Laboratory Procedures, Science Instruction, Visual Aids
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Harden, Ronald M. – Anatomical Sciences Education, 2015
Interprofessional education (IPE) is on today's agenda in medical education as a response to advances in medicine, the changes that have taken place in healthcare delivery, and pressures from the public and the profession. Although attention has focused on IPE in the later stages of the education program, there are benefits to be gained from the…
Descriptors: Medical Education, Interdisciplinary Approach, Interprofessional Relationship, Anatomy
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Curcio, Daniella Franco; Behlau, Mara; Barros, Mirna Duarte; Smith, Ricardo Luiz – Anatomical Sciences Education, 2012
Multidisciplinary cooperation in health care requires a solid knowledge in the basic sciences for a common ground of communication. In speech pathology, these fundamentals improve the accuracy of descriptive diagnoses and support the development of new therapeutic techniques and strategies. The aim of this study is to briefly discuss the benefits…
Descriptors: Research Methodology, Speech Language Pathology, Physiology, Anatomy
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Robertson, Ellen M.; Thompson, Kenneth L.; Notebaert, Andrew J. – Anatomical Sciences Education, 2020
Student struggles in gross anatomy coursework at the professional level can result in hours of remediation along with a need to allot time and other resources by both the student and the faculty. Since this course typically occurs in the first semester of the first year, programs can turn to admissions data to try to determine which of these…
Descriptors: Anatomy, Medical Students, Dentistry, Correlation
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Whelan, Alexander; Leddy, John J.; Ramnanan, Christopher J. – Anatomical Sciences Education, 2018
The purpose of this study was to evaluate the extracurricular cadaveric dissection program available to medical students at an institution with a modern (time-compressed, student-centered, and prosection-based) approach to medical anatomy education. Quantitative (Likert-style questions) and qualitative data (thematic analysis of open-ended…
Descriptors: Educational Benefits, Science Instruction, Anatomy, Laboratory Procedures
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Michelle D. Lazarus; Mandy Truong; Peter Douglas; Neil Selwyn – Anatomical Sciences Education, 2024
Anatomy educators are often at the forefront of adopting innovative and advanced technologies for teaching, such as artificial intelligence (AI). While AI offers potential new opportunities for anatomical education, hard lessons learned from the deployment of AI tools in other domains (e.g., criminal justice, healthcare, and finance) suggest that…
Descriptors: Artificial Intelligence, Anatomy, Barriers, Human Body
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