Assessment instruments used during anaesthetic simulation.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to S B Issenberg.
Explore the source record for details and available documents.
Many argue that experience is the best teacher. However, it's often dangerous for the patient and impractical for an EMS system to assess prehospital providers in their actual working environment. Simulated scenario competition fosters clearer thinking and translates into more effective action and enhanced patient outcomes during true emergencies.
Changes in medical practice that limit instruction time and patient availability, the expanding options for diagnosis and management, and advances in technology are contributing to greater use of simulation technology in medical education. Four areas of high-technology simulations currently being used are laparoscopic techniques, which provide surgeons with an opportunity to enhance their motor skills without risk to patients; a cardiovascular disease simulator, which can be used to simulate cardiac conditions; multimedia computer systems, which includes patient-centered, case-based programs that constitute a generalist curriculum in cardiology; and anesthesia simulators, which have controlled responses that vary according to numerous possible scenarios. Some benefits of simulation technology include improvements in certain surgical technical skills, in cardiovascular examination skills, and in acquisition and retention of knowledge compared with traditional lectures. These systems help to address the problem of poor skills training and proficiency and may provide a method for physicians to become self-directed lifelong learners.
Explore the source record for details and available documents.
The pressures of a changing health care system are making inroads on the commitment and effort that both basic science and clinical faculty can give to medical education. A tool that has the potential to compensate for decreased faculty time and thereby to improve medical education is multimedia computer instruction that is applicable at all levels of medical education, developed according to instructional design principles, and supported by evidence of effectiveness. The authors describe the experiences of six medical schools in implementing a comprehensive computer-based four-year curriculum in bedside cardiology developed by a consortium of university cardiologists and educational professionals. The curriculum consisted of ten interactive, patient-centered, case-based modules focused on the history, physical examination, laboratory data, diagnosis, and treatment. While an optimal implementation plan was recommended, each institution determined its own strategy. Major goals of the project, which took place from July 1996 to June 1997, were to identify and solve problems of implementation and to assess learners' and instructors' acceptance of the system and their views of its value. A total of 1,586 students used individual modules of the curriculum 6,131 times. Over 80% of students rated all aspects of the system highly, especially its clarity and educational value compared with traditional lectures. The authors discuss the aspects of the curriculum that worked, problems that occurred (such as difficulties in scheduling use of the modules in the third year), barriers to change and ways to overcome them (such as the type of team needed to win acceptance for and oversee implementation of this type of curriculum), and the need in succeeding years to formally assess the educational effectiveness of this and similar kinds of computer-based curricula.
Explore the source record for details and available documents.
Explore the source record for details and available documents.