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1.
J Ultrasound Med ; 36(6): 1245-1250, 2017 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-28164354

RESUMO

Emergency Medicine residency programs offer ultrasound-focused curricula to address Accreditation Council for Graduate Medical Education (ACGME) milestones. Although some programs offer advanced clinical tracks in ultrasound, no standard curriculum exists. We sought to establish a well-defined ultrasound track curriculum to allow interested residents to develop advanced clinical skills and scholarship within this academic niche. The curriculum involves a greater number of clinical scans, ultrasound-focused scholarly and quality improvement projects, enhanced faculty-driven ultrasound focused didactics, and participation at a national ultrasound conference to receive certification. Successful ultrasound scholarly tracks can provide residents with the potential to obtain fellowships or competency beyond ACGME requirements.


Assuntos
Competência Clínica/estatística & dados numéricos , Currículo , Avaliação Educacional/estatística & dados numéricos , Medicina de Emergência/educação , Internato e Residência/organização & administração , Radiologia/educação , Ultrassonografia/estatística & dados numéricos , Medicina de Emergência/estatística & dados numéricos , Estudos Longitudinais , Ohio , Radiologia/estatística & dados numéricos , Reprodutibilidade dos Testes , Sensibilidade e Especificidade
2.
J Ultrasound Med ; 31(2): 295-300, 2012 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22298874

RESUMO

This project was designed to use existing evidence in education and clinical quality improvement to design an educational and clinical model specific for physician-performed focused sonography. The I-AIM model (indication, acquisition, interpretation, and medical decision making) was created to serve as both a mnemonic and checklist. The model follows a stepwise logic for performing focused sonographic examinations and contains detailed subcomponent listings that cover specific areas to improve use and performance. Although validation and reliability studies will be required before implementation, the I-AIM model represents the first effort to standardize and improve clinical and educational focused-sonography.


Assuntos
Educação Médica/métodos , Modelos Educacionais , Radiologia/educação , Ultrassonografia , Algoritmos , Lista de Checagem , Competência Clínica , Currículo , Tomada de Decisões , Avaliação Educacional , Humanos
3.
Ultrasound J ; 12(1): 8, 2020 Feb 28.
Artigo em Inglês | MEDLINE | ID: mdl-32108277

RESUMO

BACKGROUND: Point-of-care ultrasound (POCUS) has an ever-growing footprint in medicine. With this growth POCUS billing and reimbursement has become an area gaining quite a bit of attention as a means of funding and sustaining quality and education programs. Standardization across providers is needed to improve the financial viability of POCUS. RESULTS: We created an institutional collaborative which developed a framework to identify critical POCUS billing and reimbursement checkpoints. The framework, Billing I-AIM, provides a feasible structure to enhance provider-based reimbursement and perform quality improvement efforts across variable POCUS environments. CONCLUSIONS: POCUS billing using the Billing I-AIM technique allows administrative oversight, quality assurance, and educational functions as well. A discussion of the framework and respective application is provided.

5.
Crit Ultrasound J ; 5(1): 6, 2013 Jul 02.
Artigo em Inglês | MEDLINE | ID: mdl-23819896

RESUMO

BACKGROUND: Physician-performed focused ultrasonography is a rapidly growing field with numerous clinical applications. Focused ultrasound is a clinically useful tool with relevant applications across most specialties. Ultrasound technology has outpaced the education, necessitating an early introduction to the technology within the medical education system. There are many challenges to integrating ultrasound into medical education including identifying appropriately trained faculty, access to adequate resources, and appropriate integration into existing medical education curricula. As focused ultrasonography increasingly penetrates academic and community practices, access to ultrasound equipment and trained faculty is improving. However, there has remained the major challenge of determining at which level is integrating ultrasound training within the medical training paradigm most appropriate. METHODS: The Ohio State University College of Medicine has developed a novel vertical curriculum for focused ultrasonography which is concordant with the 4-year medical school curriculum. Given current evidenced-based practices, a curriculum was developed which provides medical students an exposure in focused ultrasonography. The curriculum utilizes focused ultrasonography as a teaching aid for students to gain a more thorough understanding of basic and clinical science within the medical school curriculum. The objectives of the course are to develop student understanding in indications for use, acquisition of images, interpretation of an ultrasound examination, and appropriate decision-making of ultrasound findings. RESULTS: Preliminary data indicate that a vertical ultrasound curriculum is a feasible and effective means of teaching focused ultrasonography. The foreseeable limitations include faculty skill level and training, initial cost of equipment, and incorporating additional information into an already saturated medical school curriculum. CONCLUSIONS: Focused ultrasonography is an evolving concept in medicine. It has been shown to improve education and patient care. The indications for and implementation of focused ultrasound is rapidly expanding in all levels of medicine. The ideal method for teaching ultrasound has yet to be established. The vertical curriculum in ultrasound at The Ohio State University College of Medicine is a novel evidenced-based training regimen at the medical school level which integrates ultrasound training into medical education and serves as a model for future integrated ultrasound curricula.

6.
Crit Ultrasound J ; 4(1): 15, 2012 Jul 02.
Artigo em Inglês | MEDLINE | ID: mdl-22871130

RESUMO

BACKGROUND: Ultrasonography (US) at the medical student level is developing. As clinical skills and simulation centers expand, US equipment miniaturizes, and more students are exposed to ultrasound; a digital portfolio comprised of US images and videos may be useful in demonstrating experience and possibly competency. METHODS: Medical students participated in US curricula consisting of didactics and hands-on training. From 1 July 2006 to 30 June 2008, student images and videos were saved. Total images and videos were evaluated and catalogued. RESULTS: A total of 10,074 images and 1,227 videos were saved during the 2-year period. For the academic year 2006 to 2007, 159 medical students obtained 3,641 of the images (84.9%) and 270 of the videos (86.0%). First year students obtained 778 images and 20 videos; second year students, 1,174 images and 64 videos; third year students, 211 images and 20 videos; and fourth year students, 1,478 images and 166 videos.For the academic year 2007 to 2008, 222 medical students obtained 4,340 images (75%) and 619 videos (67.8%). First year students obtained 624 images and 109 videos; second year students, 555 images and 81 videos; third year students, 132 images and 14 videos; and fourth year students, 3,029 images and 415 videos. CONCLUSIONS: The ultrasound digital portfolio allows medical students to collate and document their ultrasound experience. Currently, there is no requirement for ultrasound training, documentation of competency, or minimum numbers of US exams for medical education. The ultrasound digital portfolio may be a useful tool in documenting ultrasound proficiency.

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