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Biomedical subjects

Malathi Srinivasan

Publications and source records attributed to Malathi Srinivasan.

21 records · Page 2Linked to original sources

Visualizing the future: technology competency development in clinical medicine, and implications for medical education.

OBJECTIVE: In this article, the authors ask three questions. First, what will physicians need to know in order to be effective in the future? Second, what role will technology play in achieving that high level of effectiveness? Third, what specific skill sets will physicians need to master in order to become effective? METHOD: Through three case vignettes describing past, present, and potential future medical practices, the authors identify trends in major medical, technological and cultural shifts that will shape medical education and practice. RESULTS: From these cases, the authors generate a series of technology-related competencies and skill sets that physicians will need to remain leaders in the delivery of medical care. Physicians will choose how they will be end-users of technology, technology developers, and/or the interface between users and developers. These choices will guide the types of skills each physician will need to acquire. Finally, the authors explore the implications of these trends for medical educators, including the competencies that will be required of educators as they develop the medical curriculum. CONCLUSIONS: Examining historical and social trends, including how users adopt current and emerging technologies, allows us to anticipate changes in the practice of medicine. By considering market pressures, global trends and emerging technologies, medical educators and practicing physicians may prepare themselves for the changes likely to occur in the medical curriculum and in the marketplace.

Attitude to Health↗

Assessment of clinical skills using simulator technologies.

OBJECTIVE: Simulation technologies are used to assess and teach competencies through the provision of reproducible stimuli. They have exceptional utility in assessing responses to clinical stimuli that occur sporadically or infrequently. In this article, the authors describe the utility of emerging simulation technologies, and discuss critical issues in simulator-based skills assessment and appropriate results analysis. METHOD: Based on literature search and expert consensus, the authors discuss three simulation technologies: standardized patients and the objective structured clinical examination; the integrated high fidelity mannequin; virtual clinical stations and the objective structured virtual examination. RESULTS: The authors explore the current state of these technologies: uses, cost, limitations, and likely future applications. For instance, tele-standardized patients may test learners' communication/management approach to challenges during tele-consultation, such as a suicidal patient several hundred miles away. Integrated mannequins may test leadership skills during psychiatric emergencies. Case-based interactive virtual clinical assessment tools may test learners' decision-making skills or self-reflection. However, these exciting tools must be implemented systematically. Specifically, educators must define the competencies of interest precisely. Appropriate data analysis will generate dependable results, ascribing the correct proportion of outcome variability to individual learner behavior. Careful analysis and utilization of results will allow justification of the costs to major stakeholders. CONCLUSIONS: Simulation technologies offer exciting possibilities for skills evaluation and clinical practice improvement. When used creatively and appropriately, they form a useful adjunct in the armament of educators addressing the question, "Is this physician competent?"

Clinical Competence↗

Electronic medical records and their impact on resident and medical student education.

OBJECTIVE: Electronic medical records (EMRs) are becoming prevalent and integral tools for residents and medical students. EMRs can integrate point-of-service information delivery within the context of patient care. Though it may be an educational tool, little is known about how EMR technology is currently used for medical learners. METHOD: The authors reviewed the available published literature about the impact of EMRs on learners, including learners' attitudes about EMRs, educational uses of EMRs, and the potential effects of EMRs on learners' daily work. RESULTS: Research on EMRs for education is in its infancy. The authors found fewer than 50 articles with evidence on their use in medical education. The applications to education included point-of-care knowledge delivery, computerized clinical decision support systems, profiling of learner experiences, and daily workflow management. The evidence was mainly derived from single institution studies and occasionally across disciplines. CONCLUSIONS: EMRs have great potential as an educational tool, but thus far, strong data to support their use for this are lacking. As the usage of EMRs rises, educators must continue to study how best to use technology as an educational tool and as a tool to improve the daily work of residents and medical students.

Education, Medical↗