30 research outputs found

    Curated Collections for Educators: Eight Key Papers about Feedback in Medical Education

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    Feedback is an essential part of learning, growth, and academic success. Junior faculty members are often unfamiliar with the grounding literature that defines feedback. Many times they receive little education on providing and receiving feedback, resulting in unhelpful "feedback" for both learners and program leadership alike. This article aims to summarize eight key papers on feedback, to outline relevant information for emerging clinician educators, and identify ways to use these resources for the faculty development. In order to generate a list of key papers that describes the importance and significance of feedback, the authors conducted a consensus-building process to identify the top papers. In August and September, 2018, the 2018-2019 Academic Life in Emergency Medicine (ALiEM) Faculty Incubator program discussed the topic of feedback in medical education. A number of papers on the topic was highlighted. This list of papers was further augmented using the suggestions and expertise of guest experts who are leaders in the field of medical education and feedback. The authors also used social media to conduct an open call on Twitter for important papers regarding feedback (utilizing #meded, #Feedback hashtags). Via this process, a list of 88 key papers was identified on the topic of feedback in medical education. After compiling these papers, the authorship group engaged in a modified Delphi approach to build consensus on the top eight papers on feedback. These papers were deemed essential by the authors and have been summarized with respect to their relevance to junior faculty members and to faculty developers. In this manuscript, we present eight key papers addressing feedback in medical education with discussions and applications for junior faculty members and faculty developers. This list of articles that can serve to help junior clinician educators grow in their ability to give effective feedback and also serve as resources upon which senior faculty can design the faculty development sessions

    Curated Collections for Educators: Five Key Papers about Receiving Feedback in Medical Education

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    Introduction Feedback is a complex, multi-component interaction that is essential for academic development and advancement. Successful feedback requires active involvement from both the giver and receiver. However, research and guidance on the subject mostly center on the role of the provider of feedback. But the receiver of feedback holds the true power in this interaction, choosing how to interpret the information and deciding whether or not to incorporate the feedback to instill behavioral change. In this article, the authors aim to summarize five key papers related to receiving feedback, in order to outline both relevant information for emerging clinician-educators and discern ways to use this information for faculty development. Methods In order to generate a list of key papers that describe the importance of receiving feedback, the authors conducted a consensus-building process informed by social media sources. Key articles on receiving feedback were aggregated through a literature search. This list was further augmented via an open call on Twitter for important papers regarding receiving feedback. Through these processes, a list of 43 papers was created on the topic of receiving feedback in medical education. After compiling this preliminary list, the authorship group engaged in a modified Delphi approach to build consensus on selecting papers that best described the process of receiving feedback. Results We present the group's five most highly rated papers on the topic of receiving feedback in medical education. These papers were deemed essential and have also been summarized based on their relevance to junior faculty members and faculty developers. Conclusion While giving and receiving feedback are both vital for growth and development, much of the research focuses solely on giving feedback. However, receiving feedback is equally, if not more, important for instilling change in the learner. We explore the power of receiving feedback in medical education through five key papers that analyze the subject. We believe these papers can serve as great learning resources for both junior faculty members and faculty developers. They can assist the junior faculty to cultivate the ability to receive feedback and also serve as resources to aid senior faculty in building faculty-development sessions

    Clinical teaching: An evidence-based guide to best practices from the Council of Emergency Medicine Residency Directors

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    Clinical teaching is the primary educational tool use to train learners from day one of medical school all the way to the completion of fellowship. However, concerns over time constraints and patient census have led to a decline in bedside teaching. This paper provides a critical review of the literature on clinical teaching with a focus on instructor teaching strategies, clinical teaching models, and suggestions for incorporating technology. Recommendations for instructor-related teaching factors include adequate preparation, awareness of effective teacher attributes, using evidence-based-knowledge dissemination strategies, ensuring good communication, and consideration of environmental factors. Proposed recommendations for potential teaching strategies include the Socratic method, the One-Minute Preceptor model, SNAPPS, ED STAT, teaching scripts, and bedside presentation rounds. Additionally, this article will suggest approaches to incorporating technology into clinical teaching, including just-in-time training, simulation, and telemedical teaching. This paper provides readers with strategies and techniques for improving clinical teaching effectiveness

    Tumor Susceptibility Gene 101 (TSG101) Is a Novel Binding-Partner for the Class II Rab11-FIPs

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    The Rab11-FIPs (Rab11-family interacting proteins; henceforth, FIPs) are a family of Rab11a/Rab11b/Rab25 GTPase effector proteins implicated in an assortment of intracellular trafficking processes. Through proteomic screening, we have identified TSG101 (tumor susceptibility gene 101), a component of the ESCRT-I (endosomal sorting complex required for transport) complex, as a novel FIP4-binding protein, which we find can also bind FIP3. We show that α-helical coiled-coil regions of both TSG101 and FIP4 mediate the interaction with the cognate protein, and that point mutations in the coiled-coil regions of both TSG101 and FIP4 abrogate the interaction. We find that expression of TSG101 and FIP4 mutants cause cytokinesis defects, but that the TSG101-FIP4 interaction is not required for localisation of TSG101 to the midbody/Flemming body during abscission. Together, these data suggest functional overlap between Rab11-controlled processes and components of the ESCRT pathway
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