Literature DB >> 33783760

Development of a novel 3D-printed multifunctional thorax model simulator for the simulation-based training of tube thoracostomy.

V Brannan1, C L Dunne2, A Dubrowski3, M H Parsons4.   

Abstract

Tube thoracostomy is a high-acuity, low-occurrence (HALO) procedure with significant morbidity when performed incorrectly; this is amendable through simulation. Commercially available trainers exist but often have limited realism or exorbitant cost. Three-dimensional (3D) printing produces realistic and cost-effective models suitable for simulation, but no simulator has been developed for tube thoracostomy. The aim of this paper is to describe the initial development of a multifunctional 3D-printed thorax trainer for the instruction of tube thoracostomy. The thorax model was developed in conjunction with a multi-disciplinary team using 3D-printing capable software. An existing ribcage model was modified and printed in separate elements, including bony portions (ribcage, sternum and clavicles), flexible joints, skin, heart and lungs and then assembled. The total printing cost was $180 CAD. Future research will focus on incorporating the model's ability to simulate other HALO procedures and evaluating it as a training adjunct.

Keywords:  3D-printing; Emergency Medicine; education; simulation

Year:  2021        PMID: 33783760     DOI: 10.1007/s43678-021-00102-1

Source DB:  PubMed          Journal:  CJEM        ISSN: 1481-8035            Impact factor:   2.410


  1 in total

1.  Evaluation of a Mobile Telesimulation Unit to Train Rural and Remote Practitioners on High-Acuity Low-Occurrence Procedures: Pilot Randomized Controlled Trial.

Authors:  Jennifer Jewer; Michael H Parsons; Cody Dunne; Andrew Smith; Adam Dubrowski
Journal:  J Med Internet Res       Date:  2019-08-06       Impact factor: 5.428

  1 in total

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