Search PubMed⌕ Search

PubMed · 14666835

Practice-based learning and improvement.

Abstract

Workplace learning is becoming increasingly important in all fields. While workplace learning in medicine, also called practice-based learning and improvement (PBLI) is not new, understanding how it works and how it fits with an individual physician's continuing professional development is new. In this article, we describe seven issues associated with PBLI and then pose questions for reflections, as continuing medical education (CME) planners consider working with PBLI.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Donald E Moore, Floyd C Pennington. 2003. Practice-based learning and improvement.. https://doi.org/10.1002/chp.1340230411

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

KEEP EXPLORING

Related citations

Mentoring surgeons for the 21st century.

BACKGROUND: Effective mentoring is especially critical in the training of surgeons. The practice of surgery in the 21st century is changing rapidly at every level, requiring a more complex approach to mentoring young surgeons. METHODS: This article draws on the author's own experiences in mentoring surgeons at a large tertiary care cancer treatment center and on published reports of successful mentoring strategies at other institutions. RESULTS: Besides clinical and surgical skills, surgical trainees must acquire a broad range of technical, interpersonal, administrative, and research skills. The 21st century brings special demands, including changing treatment patterns, increased diversity in trainees and in patient populations, restrictions on how we train our students, increased concerns about patient privacy, and an aging population. Besides the classic mentor/mentee relationship, different models of mentoring, including mosaic mentoring and collaborative mentoring, are being used to address these issues. Successful mentoring programs occur in institutions that maintain a culture that actively supports mentoring. CONCLUSIONS: New approaches to mentoring can successfully meet the diverse needs of surgical trainees in the 21st century.

Education, Medical, Continuing↗

Comparison of the instructional efficacy of Internet-based CME with live interactive CME workshops: a randomized controlled trial.

CONTEXT: Despite evidence that a variety of continuing medical education (CME) techniques can foster physician behavioral change, there have been no randomized trials comparing performance outcomes for physicians participating in Internet-based CME with physicians participating in a live CME intervention using approaches documented to be effective. OBJECTIVE: To determine if Internet-based CME can produce changes comparable to those produced via live, small-group, interactive CME with respect to physician knowledge and behaviors that have an impact on patient care. DESIGN, SETTING, AND PARTICIPANTS: Randomized controlled trial conducted from August 2001 to July 2002. Participants were 97 primary care physicians drawn from 21 practice sites in Houston, Tex, including 7 community health centers and 14 private group practices. A control group of 18 physicians from these same sites received no intervention. INTERVENTIONS: Physicians were randomly assigned to an Internet-based CME intervention that could be completed in multiple sessions over 2 weeks, or to a single live, small-group, interactive CME workshop. Both incorporated similar multifaceted instructional approaches demonstrated to be effective in live settings. Content was based on the National Institutes of Health National Cholesterol Education Program--Adult Treatment Panel III guidelines. MAIN OUTCOME MEASURES: Knowledge was assessed immediately before the intervention, immediately after the intervention, and 12 weeks later. The percentage of high-risk patients who had appropriate lipid panel screening and pharmacotherapeutic treatment according to guidelines was documented with chart audits conducted over a 5-month period before intervention and a 5-month period after intervention. RESULTS: Both interventions produced similar and significant immediate and 12-week knowledge gains, representing large increases in percentage of items correct (pretest to posttest: 31.0% [95% confidence interval {CI}, 27.0%-35.0%]; pretest to 12 weeks: 36.4% [95% CI, 32.2%-40.6%]; P<.001 for all comparisons). Chart audits revealed high baseline screening rates in all study groups (> or =93%) with no significant postintervention change. However, the Internet-based intervention was associated with a significant increase in the percentage of high-risk patients treated with pharmacotherapeutics according to guidelines (preintervention, 85.3%; postintervention, 90.3%; P = .04). CONCLUSIONS: Appropriately designed, evidence-based online CME can produce objectively measured changes in behavior as well as sustained gains in knowledge that are comparable or superior to those realized from effective live activities.

Education, Medical, Continuing↗