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Biomedical subjects

Gary M Velan

Publications and source records attributed to Gary M Velan.

5 recordsLinked to original sources

Integrating histology and histopathology teaching in practical classes using virtual slides.

The new medicine program at the University of New South Wales employs scenario-based learning with vertically integrated classes of year 1 and year 2 students, as well as horizontally integrated teaching with no discipline-specific courses. Coinciding with its introduction, we undertook comprehensive revision of the approach to teaching microscopic anatomy and pathology. We designed practical classes around virtual slides, which are high-magnification digital images of tissue sections stored in a multiresolution file format, viewable in a Web browser in a manner closely simulating conventional microscopy. In these classes, we integrated the teaching of histology and histopathology, introducing students to the microscopic features of tissues and organs, and giving them the opportunity to compare and contrast the normal with the abnormal in various disease states. Members of academic staff from both anatomy and pathology were present to promote discussion and respond to questions. Worksheets defined learning objectives and provided clinical cases as contexts for learning in each class. Evaluation revealed that students strongly supported the integrated approach. The efficiency of the teaching method meant that it was possible to work through 5-8 virtual slides per 2-hr class without difficulty. Students displayed considerable initiative in exploring the histological features of tissues, identifying the changes in various pathological states, and recognizing their relationship to clinical manifestations. We believe that the approach we have developed should help to minimize the potential adverse impact of curriculum reform on the teaching of morphology, while ensuring that learning remains both meaningful and interesting.

Computer Simulation↗

Virtual microscopy for learning and assessment in pathology.

Virtual slides are high-magnification digital images of tissue sections, stored in a multi-resolution file format. Using appropriate software, these slides can be viewed in a web browser in a manner that closely simulates examination of glass slides with a real microscope. We describe the successful implementation of teaching microscopic pathology with virtual slides and, for the first time, their use in summative assessment. Both students and teaching staff readily adapted to the use of virtual microscopy. Questionnaire feedback from students strongly indicated that virtual slides solved a number of problems in their learning, while providing good to excellent image quality. A deliberate policy of allocating two students per workstation promoted collaboration and helped to maintain interest in microscopic pathology. The use of a secure browser facilitated assessment using virtual slides, with no technical or security issues arising despite high peak demand. The new Medicine programme at the University of New South Wales will exclusively utilize virtual microscopy for the study of both histology and histopathology. We believe that the use of high-quality learning resources such as virtual slides can ensure that microscopic examination of tissues remains both meaningful and interesting.

Computer Simulation↗

Web-based self-assessments in pathology with Questionmark Perception.

Formative assessment with appropriate feedback is an effective method of promoting learning. Software tools are now available to facilitate the delivery of formative self-assessments via the World Wide Web. For the past 5 years, we have offered on-line formative self-assessments in pathology to undergraduate medical students. These assessments, which have been authored using Questionmark Perception, have proved particularly popular and have received high ratings in course evaluation surveys. Furthermore, they appear to have been effective in promoting student learning, with evidence that students made a genuine attempt to answer the questions in the assessment and that they learnt from doing so. The potential of on-line formative self-assessments for postgraduate training and continuing education in pathology so far remains untapped.

Computer-Assisted Instruction↗

Development and evaluation of a computer-assisted learning module on glomerulonephritis for medical students.

An interactive computer-assisted learning (CAL) module on glomerulonephritis, previously identified by fourth-year medical students as a difficult topic, was developed. The module comprised background material, case studies, graphics, animation, video and supporting quizzes with feedback. The impact of the module on student learning was evaluated by comparing the performance of two matched groups of students, only one of which accessed the CAL module, in an online assessment. The analysis examined the effect of having completed a clinical term in renal medicine. A significant improvement in the performance of those students who used the CAL module was demonstrated. Unexpectedly, completing a renal medicine term had no beneficial influence on students' performance. Students who used the CAL module perceived a significant decrease in the difficulty of the topic. It is concluded that the module is an effective learning tool, but important caveats are noted associated with using CAL modules in redesigned medical curricula.

Computer-Assisted Instruction↗