Literature DB >> 20135944

Mannequin simulation improves the confidence of medical students performing tube thoracostomy: a prospective, controlled trial.

Shuji Hishikawa1, Masaki Kawano, Hozumi Tanaka, Kenjiro Konno, Yoshikazu Yasuda, Ryutaro Kawano, Eiji Kobayashi, Alan T Lefor.   

Abstract

This study was undertaken to determine the educational benefits of mannequin simulation for performance of tube thoracostomy in a porcine model by medical students. Thirty medical students were randomized into two groups; the first performed tube thoracostomy on a mannequin simulator and then a porcine model; the second used only the porcine model. Performance measures included completion of subtasks, time to perform the procedure, a global score assigned by faculty raters, and a self-evaluation survey. Subtask completion rate was similar in both groups (P > 0.05). Mean time to perform the procedure was 9.8 minutes (+/- 0.9, simulator), and 9.3 minutes (+/- 1.0, nonsimulator, P > 0.05). Global scores were 12.3 (+/- 1.3, simulator) and 11.0 (+/- 1.4, non-simulator, P > 0.05). Self-evaluation of confidence (1 = "very", 7 = "not at all") showed the simulator group was significantly more confident (3.4 +/- 0.42) than the nonsimulator group (4.7 +/- 0.49, P < 0.05). All students met basic competencies to perform tube thoracostomy. The simulator group felt significantly more confident to subsequently perform the procedure on a patient, whereas performance was not statistically significantly different for the two groups. Further trials may be needed to delineate the optimal role for these simulators in teaching tube thoracostomy.

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Year:  2010        PMID: 20135944

Source DB:  PubMed          Journal:  Am Surg        ISSN: 0003-1348            Impact factor:   0.688


  11 in total

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2.  Simulator Training in Interventional Cardiology.

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Authors:  Anita A Thomas; Neil G Uspal; Assaf P Oron; Eileen J Klein
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4.  A novel method for improving chest tube insertion skills among medical interns. Using biomaterial-covered mannequin.

Authors:  Ozgur Tatli; Suha Turkmen; Melih Imamoglu; Yunus Karaca; Mustafa Cicek; Metin Yadigaroglu; Selen T Bayrak; Olgun Asik; Murat Topbas; Suleyman Turedi
Journal:  Saudi Med J       Date:  2017-10       Impact factor: 1.484

5.  Enhancing residents' neonatal resuscitation competency through unannounced simulation-based training.

Authors:  Jeffrey W Surcouf; Sheila W Chauvin; Jenelle Ferry; Tong Yang; Brian Barkemeyer
Journal:  Med Educ Online       Date:  2013-03-21

6.  The pig as a model for translational research: overview of porcine animal models at Jichi Medical University.

Authors:  Eiji Kobayashi; Shuji Hishikawa; Takumi Teratani; Alan T Lefor
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7.  Tube thoracostomy training with a medical simulator is associated with faster, more successful performance of the procedure.

Authors:  Tae Nyoung Chung; Sun Wook Kim; Je Sung You; Hyun Soo Chung
Journal:  Clin Exp Emerg Med       Date:  2016-03-31

Review 8.  Swine used in the medical university: overview of 20 years of experience.

Authors:  Eiji Kobayashi; Yutaka Hanazono; Satoshi Kunita
Journal:  Exp Anim       Date:  2017-10-07

9.  Impact of simulation-based training in surgical chest tube insertion on a model of traumatic pneumothorax.

Authors:  Alexandre Léger; Aiham Ghazali; Franck Petitpas; Youcef Guéchi; Amélie Boureau-Voultoury; Denis Oriot
Journal:  Adv Simul (Lond)       Date:  2016-06-10

Review 10.  Trauma surgery simulation education in Japan: the Advanced Trauma Operative Management course.

Authors:  Alan Kawarai Lefor
Journal:  Acute Med Surg       Date:  2018-07-01
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