Literature DB >> 28628720

Cost-effective teaching of radiology with preclinical anatomy.

James S Wilson1, Jacqueline Alvarez2, Bonnie C Davis3,4, Andre J Duerinckx3,4.   

Abstract

Graduating physicians in all subspecialties have an increased need for competency in radiology, particularly since the use of diagnostic imaging continues to grow. To integrate the teaching of radiology with anatomy during the first year of medical school at Howard University, a novel approach was developed to overcome the limitations of resources including funding, faculty, and curricular time. The resulting program relies on self-study and peer-to-peer interactions to develop proficiency at manipulating free versions of medical image viewer software (using the DICOM standard), identifying normal anatomy in medical images, and applying critical thinking skills to understand common clinical conditions. An effective collaborative relationship between a radiologist and anatomist was necessary to develop and implement the program of anatomic-radiographic instruction which consists of five tiers: (1) initial exposure to anatomy through dissection which provides a foundation of knowledge; (2) study of annotated radiographs from atlases; (3) a radiology quiz open to group discussions; (4) small group study of clinical cases with diagnostic images; and (5) radiographic tests. Students took all quizzes and tests by working from image datasets preloaded on their personal computers, mimicking the approach by which radiologists analyze medical images. In addition to stimulating student support of a new teaching initiative, the strengths of Howard's program are that it can be introduced into an existing preclinical curriculum in almost any medical school with minimal disruption, it requires few additional resources to implement and run, and its design is consistent with the principles of modern education theory. Anat Sci Educ 11: 196-206.
© 2017 American Association of Anatomists. © 2017 American Association of Anatomists.

Keywords:  DICOM; YouTube tutorials; gross anatomy education; medical education; medical pedagogy; peer-teaching; preclinical curriculum; radiology curriculum; radiology education

Mesh:

Year:  2017        PMID: 28628720     DOI: 10.1002/ase.1710

Source DB:  PubMed          Journal:  Anat Sci Educ        ISSN: 1935-9772            Impact factor:   5.958


  3 in total

1.  Evaluating the effectiveness of integrating radiological and cross-sectional anatomy in first-year medical students - A randomized, crossover study.

Authors:  R Rajprasath; V Dinesh Kumar; Magi Murugan; Bhavani Prasad Goriparthi; Rema Devi
Journal:  J Educ Health Promot       Date:  2020-01-30

2.  The Benefits of an Augmented Reality Magic Mirror System for Integrated Radiology Teaching in Gross Anatomy.

Authors:  Felix Bork; Leonard Stratmann; Stefan Enssle; Ulrich Eck; Nassir Navab; Jens Waschke; Daniela Kugelmann
Journal:  Anat Sci Educ       Date:  2019-02-19       Impact factor: 5.958

3.  The question of dissection in medical training: Not just "if," but "when"? A student perspective.

Authors:  Alexandra L Webb; Lillian Smyth; Mustafa Hafiz; Krisztina Valter
Journal:  Anat Sci Educ       Date:  2022-02-22       Impact factor: 6.652

  3 in total

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