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David J Steele

Publications and source records attributed to David J Steele.

8 recordsLinked to original sources

Family medicine curriculum resource project: overview.

In 2000, the Health Resources and Services Administration, in the interest of fostering curriculum reform in medical schools, awarded a 4-year contract to the Society of Teachers of Family Medicine to develop a curricular resource. The contract directed development of a multi-part resource aimed at (1) preclerkship prerequisites for third-year clerkships in collaboration with internal medicine and pediatrics, (2) the family medicine clerkship, (3) post-clerkship preparation for residency training, and (4) specific special topic areas of importance to the government. The Family Medicine Curriculum Resource (FMCR) was produced by primary care educators, with day-to-day direction from an executive committee and overall oversight by an advisory committee. The FMCR was built around a theoretical framework to link medical student competencies with the Accreditation Council for Graduate Medical Education (ACGME) competencies for residency training. Considerable energy throughout development of the FMCR was devoted to obtaining input from potential end-user audiences through an active dissemination effort.

Curriculum↗

Family Medicine Curriculum Resource Project: the future.

Under contract to the Health Resources and Services Administration (HRSA), the Society of Teachers of Family Medicine (STFM) created an undergraduate medical education curricular resource designed to train physicians to practice in the 21st century. An interdisciplinary group of more than 35 educators worked for 4 years to create the Family Medicine Curriculum Resource (FMCR). By consensus, the Accreditation Council for Graduate Medical Education (ACGME) competencies were adopted as the theoretical framework for this project. The FMCR provides materials for the preclerkship years, the third-year family medicine clerkship, the postclerkship year, and faculty development, as well as guidance for integrating topics of special interest to the federal government (such as, geriatrics, Healthy People 2010, genetics, informatics) into a 4-year continuum of medical education. There are challenges inherent in implementing each component of the FMCR. For example, can the ACGME competency-based approach be adapted to undergraduate medical education? Can the densely packed preclerkship years be adapted to include more focused effort on developing these competencies, and whose job is it anyway? What is "core" to being a competent clinician, and what information can be obtained when needed from medical informatics sources? Will family medicine educators embrace the FMCR recommendations for their third-year clerkships? Will exit assessment of the competency levels of graduating medical students be achieved, and can it make them more capable residents? Can faculty in different clinical and educational settings integrate the teaching of "how to learn" into their repertoire? How will faculty development innovation progress in a time of increasing emphasis on clinical productivity? Developing a common language and adoption of core competencies for all levels of medical education is imperative in a society that is focusing on improving health care quality and outcomes. The FMCR Project has developed a curricular resource to assist medical educators in this task. The challenge for the future is to measure how the FMCR is used and to ascertain if it has an influence on better patient and system outcomes.

Curriculum↗

Case study research: the view from complexity science.

Many wonder why there has been so little change in care quality despite substantial quality improvement efforts. Questioning why current approaches are not making true changes draws attention to the organization as a source of answers. The authors bring together the case study method and complexity science to suggest new ways to study health care organizations. The case study provides a method for studying systems. Complexity theory suggests that keys to understanding the system are contained in patterns of relationships and interactions among the system's agents. They propose some of the "objects" of study that are implicated by complexity theory and discuss how studying these using case methods might provide useful maps of the system. They offer complexity theory, partnered with case study method, as a place to begin the daunting task of studying a system as an integrated whole.

Delivery of Health Care, Integrated↗

Integrating the art and science of medical practice: innovations in teaching medical communication skills.

BACKGROUND AND OBJECTIVES: This paper describes the content and methods used to teach communication skills in Undergraduate Medical Education for the 21st Century (UME-21) schools and provides suggestions for future efforts. METHODS: Faculty leaders of curriculum projects at UME-21 schools provided reports describing new communication curriculum projects. Reports were reviewed and analyzed, curriculum content and methods were categorized into themes, and findings were confirmed through phone interviews with lead faculty at each participating school. RESULTS: Curriculum projects were designed to improve medical students' communication skills during the clerkship years at 12 participating UME-21 schools. These skills were addressed through a variety of teaching methods and applied in interactions with patients, health teams, and community members. Curricular themes included conflict resolution, delivery of bad news, addressing patient preferences for end-of-life care, patient and community health education, communicating with families, and working effectively with patients from diverse backgrounds. Students' communication skill competencies were assessed through a variety of methods including objective structured clinical examinations, focused observation and feedback, and debriefing sessions based on recall, audiotapes, or videotapes of encounters. CONCLUSIONS: Opportunities for students to develop, apply, and refine their communication skills can be embedded throughout the medical school curricula. Our findings illustrate the variety of methods that may be used to teach and evaluate medical students' communication skill competencies. Future challenges include development of comprehensive longitudinal curricula, practical teaching methods, valid evaluation tools, and faculty development.

Clinical Clerkship↗

From library to discharge: a managing care student project.

BACKGROUND AND OBJECTIVES: The Patient Care Project (PCP) was a central component of the Undergraduate Medical Education for the 21st Century (UME-21) grant project at the University of Nebraska. With the primary goal of improving students' critical thinking skills, the PCP was directed more toward an understanding of managing care than the business aspects of managed care and emphasized written communication skills, clinical hypothesis testing, and exploring ways to solve medical and ethical questions. METHODS: All 239 students graduating in 2000 and 2001 were required to analyze the medical care received by one of their hospitalized patients. Using a criterion-based evaluation tool, students' written critiques were assessed in five specific areas, all of which required critical thinking skills. Students also received an overall grade for the project. The UME-21 Graduation Survey was used to assess changes in attitudes and behavior. Students graduating in 1999, prior to the institution of the PCP graduation requirement, served as a control group. RESULTS: The most frequently discussed topic of the PCPs was cardiovascular disease. The mean overall rating by the faculty for the PCPs was 3.7 and 3.8 in academic years 2000 and 2001, respectively (maximum=5). In a qualitative analysis of the PCPs, students demonstrated insight into their patients' overall medical care, including the use of evidence-based medicine (EBM), quality improvement, and cost containment. There were no statistically significant differences, however, between the PCP and control groups on the UME-21 Graduation Survey. Nonetheless, more students who had completed the PCP reported that they had identified the total cost of a patient's stay, designed a quality improvement loop, and obtained clinical evidence from an EBM computer database. On this same survey, all students agreed with the use of clinical practice guidelines and cost containment. CONCLUSIONS: The PCP appeared to be relevant to the students' learning needs, and they provided cogent critiques of the medical care they had rendered as well as critical analyses of their patients' discharge summaries and the cost of care including ways to reduce cost. On the other hand, we were unable to demonstrate any substantial differences in the results of the UME-21 Graduation Survey given to both the PCP and control groups. In spite of this lack of effect on students' attitudes, the PCP was perceived by the faculty to be valuable and has been incorporated into the required third-year family medicine clerkship at the University of Nebraska.

Clinical Clerkship↗

Computer-assisted learning for teaching anatomy and physiology in subjects allied to medicine.

Computer-assisted learning (CAL) may provide an effective supplement to conventional methods of teaching, particularly in subjects such as anatomy and physiology. CAL provides the student with an important additional resource and facilitates alternative modes of learning that are well suited to the requirements of students in subjects allied to medicine. A brief survey is presented which examines those studies that have investigated the utility of CAL for teaching anatomy and physiology within subjects allied to medicine.

Allied Health Personnel↗

Learning preferences, computer attitudes, and student evaluation of computerised instruction.

OBJECTIVE: To explore the relationship between learning preferences, attitudes towards computers, and student evaluation of a computer-assisted instructional (CAI) program. CONTEXT: A third year required clerkship in surgery at the University of Nebraska Medical Center. METHODS: A mixed-methods design combining attitudinal measures and qualitative interviews was employed to assess student reactions to a CAI program on angiography completed during a required surgical clerkship. Between January 1998 and July 1999, 151 students completed the program. Prior to participating, students completed the Rezler Learning Preference Inventory (LPI) and a computer attitudes survey (CAS). The LPI characterizes learning preferences as being abstract or concrete, individual or interpersonal, and student-structured or teacher-structured. The CAS measures attitudes towards computers and their role in education. After using the CAI program, students evaluated the module by completing an 18 item questionnaire. Based on LPI and CAS scores, 31 students were invited to participate in an in-depth qualitative interview on their experiences and perceptions of the program. RESULTS: There was no relationship between learning preferences, computer attitudes, and evaluation of the CAI program. Students were very positive about the program's content, clarity, organization, and ease of use. They also rated it as efficient and effective. However, many still indicated a preference for lecture and text-based learning. Qualitative interviews suggest students worry computers will supplant student--teacher contact. CONCLUSIONS: Learning preferences and prior attitudes toward computers did not bias student reactions to the CAI program assessed in this study. However, students expressed concerns that CAI would interfere with the traditional student--teacher encounter and relationship.

Attitude to Computers↗