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Showing 2,746 to 2,760 of 12,293 results
Kooloos, Jan G.M.; Bolt, Sophie; van der Straaten, Joop; Ruiter, Dirk J. – Anatomical Sciences Education, 2010
On All Saints Day 2009 a monument for body donors was unveiled by the Department of Anatomy, at the Radboud University Nijmegen Medical Centre (RUNMC). Although body donation to medical science contributes substantially to the quality of medical education, the ceremony was only the first time that the RUNMC publicly reciprocated the anatomical…
Descriptors: Anatomy, Donors, Medical Education, Facilities
Nayak, Satheesha B.; Kodimajalu, Soumya – Anatomical Sciences Education, 2010
An innovative strategy called "progressive drawing" was used at the beginning (lid-opener) and later (monotony-breaker) during gross anatomy lectures. Diagrams were drawn on the classroom blackboard with anatomic structures added one by one. Students identified and labeled the diagrams and predicted the next structures to be drawn. Students felt…
Descriptors: Anatomy, Medical Education, Freehand Drawing, Prior Learning
Burns, E. Robert – Anatomical Sciences Education, 2010
"Anatomizing" is a new verb some use to describe the breaking apart of a complex entity such as the human body, into isolated tidbits of information for study, which can never equal the complex, integrated whole. Although popular with first-year medical students, this practice of "tidbitting" anatomical information into easy to memorize facts or…
Descriptors: Test Items, Thinking Skills, Anatomy, Medical Education
Lufler, Rebecca S.; Zumwalt, Ann C.; Romney, Carla A.; Hoagland, Todd M. – Anatomical Sciences Education, 2010
Radiological images show anatomical structures in multiple planes and may be effective for teaching anatomical spatial relationships, something that students often find difficult to master. This study tests the hypotheses that (1) the use of cadaveric computed tomography (CT) scans in the anatomy laboratory is positively associated with…
Descriptors: Medical Students, Laboratory Schools, Medical Schools, Academic Achievement
Camp, Christopher L.; Gregory, Jeremy K.; Lachman, Nirusha; Chen, Laura P.; Juskewitch, Justin E.; Pawlina, Wojciech – Anatomical Sciences Education, 2010
Professionalism is a core competency of medical training that requires students to develop the skills of providing and receiving feedback. Our study evaluated the effectiveness of delivering feedback in a group setting compared with an individual setting. The first-year class of Mayo medical students (n = 49) enrolled in gross anatomy (in…
Descriptors: Feedback (Response), Medical Students, Likert Scales, Anatomy
Darda, David M. – Anatomical Sciences Education, 2010
The observation that anatomical course offerings have decreased in undergraduate biology curricula is supported by a survey of undergraduate institutions in the state of Washington. This reduction, due partially to increased emphasis in other areas of the biology curriculum, along with the lack of anatomy prerequisites for admission to most…
Descriptors: Biology, Educational Change, Anatomy, Undergraduate Study
Talarico, Ernest F., Jr. – Anatomical Sciences Education, 2010
As human cadavers are widely used in basic sciences, medical education, and other training and research venues, there is a real need for experts trained in anatomy and dissection. This article describes a program that gives individuals interested in clinical and basic sciences practical experience working with cadavers. Participants are selected…
Descriptors: Feedback (Response), Medical Education, Laboratory Schools, Medical Schools
Sugand, Kapil; Abrahams, Peter; Khurana, Ashish – Anatomical Sciences Education, 2010
Anatomy has historically been a cornerstone in medical education regardless of nation or specialty. Until recently, dissection and didactic lectures were its sole pedagogy. Teaching methodology has been revolutionized with more reliance on models, imaging, simulation, and the Internet to further consolidate and enhance the learning experience.…
Descriptors: Medical Education, Teacher Effectiveness, Laboratory Procedures, Patients
Canby, Craig A.; Bush, Traci A. – Anatomical Sciences Education, 2010
Gross anatomy affords physical therapy students an opportunity to discover human morphology by intimately studying the dead. Moreover, it also exposes future physical therapists to the humanistic aspects of the profession. In 2007, anatomy faculty decided to socialize students to the humanities with a new course requirement: Humanities in Gross…
Descriptors: Grading, Anatomy, Physical Therapy, Humanities
Wood, Andrew; Struthers, Kate; Whiten, Susan; Jackson, David; Herrington, C. Simon – Anatomical Sciences Education, 2010
Pathology and anatomy are both sciences that contribute to the foundations of a successful medical career. In the past decade, medical education has undergone profound changes with the development of a core curriculum combined with student selected components. There has been a shift from discipline-based teaching towards problem-based learning.…
Descriptors: Medical Education, Curriculum Development, Medical Students, Core Curriculum
Luxton-Reilly, Andrew; Denny, Paul – Computer Science Education, 2010
We present an innovative pedagogical approach that we call "constructive evaluation," which shifts students from being consumers of knowledge to participants in a community of peers engaged in actively producing and sharing knowledge. Students are required to author a question that assesses one or more of the learning outcomes of a course. In…
Descriptors: Feedback (Response), Learning Theories, Item Banks, Educational Resources
Thota, Neena; Whitfield, Richard – Computer Science Education, 2010
This article describes a holistic approach to designing an introductory, object-oriented programming course. The design is grounded in constructivism and pedagogy of phenomenography. We use constructive alignment as the framework to align assessments, learning, and teaching with planned learning outcomes. We plan learning and teaching activities,…
Descriptors: Constructivism (Learning), Undergraduate Students, Investigations, Action Research
Titterton, Nathaniel; Lewis, Colleen M.; Clancy, Michael J. – Computer Science Education, 2010
Lab-centric instruction emphasizes supervised, hands-on activities by substituting lab for lecture time. It combines a multitude of pedagogical techniques into the format of an extended, structured closed lab. We discuss the range of benefits for students, including increased staff interaction, frequent and varied self-assessments, integrated…
Descriptors: Learning Activities, Computer Assisted Instruction, Mathematics Instruction, Lecture Method
Fee, Samuel B.; Holland-Minkley, Amanda M. – Computer Science Education, 2010
Regardless of the course topic, every instructor in a computing field endeavors to engage their students in deep problem-solving and critical thinking. One of the specific learning outcomes throughout our computer science curriculum is the development of independent, capable problem solving--and we believe good pedagogy can bring such about. Our…
Descriptors: Problem Based Learning, Problem Solving, Computer Science, Teaching Methods
Tibell, Lena A. E.; Rundgren, Carl-Johan – CBE - Life Sciences Education, 2010
Molecular life science is one of the fastest-growing fields of scientific and technical innovation, and biotechnology has profound effects on many aspects of daily life--often with deep, ethical dimensions. At the same time, the content is inherently complex, highly abstract, and deeply rooted in diverse disciplines ranging from "pure sciences,"…
Descriptors: Foreign Countries, Biotechnology, Ethics, Humanities

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