Search PubMed⌕ Search

PubMed · 8208171

A case-based anatomy course.

Abstract

A course is described in which the students give consideration to clinical cases as they review their current knowledge, and follow a set protocol which guided them in preparing their learning. The students are required to examine a case history, put down as key words either their first answer or the knowledge they consider they would need to answer specific questions. They then select stations at which additional information, wet specimens, models and radiological images assist them in upgrading their knowledge. They complete the exercise by writing a final answer to the questions on the case. The tutor is able through examination of the key words to determine the knowledge of the students as they enter, and confirm appropriate learning by inspection of the final answer. The students are able to identify their own deficiencies, develop strategies for thinking and learning, resulting in the acquisition of expertise in problem solving, and extend their communication skills by working with colleagues. While the course was designed for second-year anatomy teaching it could be applied to other disciplines.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T M Scott. 1994. A case-based anatomy course.. https://doi.org/10.1111/j.1365-2923.1994.tb02688.x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

How do medical teachers address the problem of transfer?

Clinical teachers often complain that medical students have forgotten or somehow "lost" knowledge that has been taught at pre-clinical levels at the time of entering the clinical part of education. The purpose of this qualitative study was to explore, whether transfer of knowledge was identified as a problem by the teaching staff of anatomy and surgery, and if so, what strategies they used to overcome it. Semi-structured interviews were conducted with ten medical teachers in anatomy and surgery. Most teachers recognised that there was a problem of transfer and some individuals had adopted strategies to address this. However, there was no formal educational strategy suggested to overcome the problem of transfer. The conclusion is that transfer needs to be addressed both by basic science teachers and clinical teachers. There is a need for a mutual educational discourse of the contexts students will face.

Anatomy↗

Anatomy reports on the internet: a web-based tool for student reports on cadaveric findings.

The difference between the idealization of anatomy atlases and the reality of human cadavers often frustrates gross anatomy students. To encourage students to celebrate rather than protest these differences, we describe a web site ARI (Anatomy Reports on the Internet) that allows students to document cadaveric findings online with photographs and text. We used several web languages for site construction, including mysql, php, html, and javascript. Faculty tools allow instructors to upload digital images of the structures, add relevant commentary, view and delete images, review submitted reports, and examine database statistics. Student tools allow dissection groups to choose and comment on images, enter and edit reports, and read reports submitted by other students. During the first two years of the site's use (2000-2001, 2002-2003), every dissection group at our institution submitted at least one report. Technical support requests were minimal.

Anatomy↗

Incidence of cardiovascular disease in the dissecting room: a valuable teaching asset.

The purpose of this study was to determine the incidence of cardiovascular pathology in 50 cadavers in the dissecting room of the Department of Anatomy at Guy's Campus, King's College, London, and to demonstrate the importance of dissection in teaching the anatomy of normal and pathological hearts. After external evaluation of each heart the four chambers were dissected and studied. The features noted included evidence of coronary atherosclerosis, myocardial infarction, variations in coronary artery anatomy, valvular disease, variations in left ventricular wall thickness and atrial dimensions, and atrial anomalies. All the hearts studied had at least one pathology. The majority had severe coronary atherosclerosis (44) and aortic valve pathology (23). A large number had left ventricular hypertrophy (13) and left atrial enlargement (9). A small number showed evidence of myocardial infarction (4). Anatomical anomalies were also found, and included persistent foramen ovale (1), three coronary arterial ostia (3), and anatomical variations of the orientation of the main stem of the left coronary artery (2). This study demonstrates that dissection is not only an excellent way of studying normal cardiac anatomy, but also a valuable method for introducing common cardiac pathologies to the medical student.

Anatomy↗