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An Exploration of Metacognitive Practices in Gross Anatomy Educators
Author(s) -
Cale Andrew S.,
McNulty Margaret A.
Publication year - 2022
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fasebj.2022.36.s1.r2386
Subject(s) - metacognition , gross anatomy , psychology , attendance , medical education , dissection (medical) , mathematics education , medicine , anatomy , cognition , neuroscience , economics , economic growth
Metacognition, the ability to monitor and regulate one’s thought processes, has been shown to benefit instructors by improving their effectiveness as teachers. Particularly with dissection‐based gross anatomy, instructors are dynamically using metacognitive processes to monitor student learning and adapt teaching strategies at table‐side. Therefore, the purpose of this study was to explore the metacognitive processes of gross anatomy instructors as they taught in an anatomy course for allied health students. METHODS All instructors in a doctoral‐level dissection‐based gross anatomy course, including faculty, associate instructors (AIs), and near‐peer teaching assistants (TAs), were invited to participate in this IRB‐approved study. All instructors participated in facilitating lab dissections. At the start and end of the course, instructors were invited to complete pre‐ and post‐questionnaires which included the Teacher Metacognition Inventory (TMI), a 28‐item survey that assesses metacognition as it relates to teaching. Pre‐ and post‐TMI scores were analyzed using Wilcoxon Signed Rank and Kruskal‐Wallis H tests. After the dissection labs, instructors who were in attendance were asked to complete reflective journals to provide deeper insight into their metacognitive processes. Topics included self‐evaluations of teaching, emotions associated with teaching, and plans for future teaching sessions. Reflective journals were thematically analyzed using both deductive and inductive coding. RESULTS All seven female instructors participated in this study, including two faculty, one AI, and four TAs (54% of instructors in the course). Due to the small number of participants, statistical significance could not be calculated for all tests. Between the start and end of the course, total TMI score increased from 106.9 to 114.0. TAs exhibited the greatest increase in total TMI score (Δ mean =13.3) followed by the AI (Δ mean =3.5) and faculty (Δ mean =2.5). In the pre‐questionnaire, TAs, AIs, and faculty exhibited the greatest difference in Metacognitive Knowledge of Self. However, this difference was reduced in the post‐questionnaire, indicating that TAs demonstrated the greatest increase in this parameter. Several specific themes were identified through thematic analysis. For example, TAs were more internally‐focused on personal traits and content mastery whereas faculty were externally‐focused on interpersonal factors (e.g. student names, inclusive language, etc.). CONCLUSION Overall, gross anatomy instructors improved their metacognition, particularly in relation to the metacognitive knowledge of their own strengths and weaknesses. TAs exhibited the most metacognitive growth while faculty remained consistent, possibly due to a ceiling effect. Upon reflection, TAs tended to focus on personal aspects while faculty focused on interpersonal aspects of teaching. SIGNIFICANCE These insights into the metacognitive processes and educational priorities of anatomy instructors can inform how to best support their professional development at different stages in their careers. Novices may benefit more from content reviews while experienced instructors may benefit from pedagogical or communications training.

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