Use of three-dimensional printing for simulation in ultrasound education: a scoping review

Author:

Gallagher Patrick,Smith Ryan,Sheppard Gillian

Abstract

BackgroundThere is a significant learning curve when teaching ultrasonography to medical trainees; task trainers can help learners to bridge this gap and develop their skills. Three-dimensional printing technology has the potential to be a great tool in the development of such simulators. ObjectiveThis scoping review aimed to identify what 3D-printed models have been used in ultrasound education to date, how they were created and the pros and limitations involved.DesignResearchers searched three online databases to identify 3D-printed ultrasound models used in medical education.ResultsTwelve suitable publications were identified for inclusion in this review. The models from included articles simulated largely low frequency and/or high stakes events, with many models simulating needle guidance procedures. Most models were created by using patient imaging data and a computer-aided design software to print structures directly or print casting molds. The benefits of 3D-printed educational trainers are their low cost, reproducibility, patient specificity and accuracy. The current limitations of this technology are upfront investments and a lack of optimisation of materials.ConclusionsThe use of 3D-printed ultrasound task trainers is in its infancy, and more research is needed to determine whether or not this technology will benefit medical learners in the future.

Publisher

BMJ

Subject

Health Informatics,Education,Modelling and Simulation

Reference30 articles.

1. The evolution of an integrated ultrasound curriculum (iUSC) for medical students: 9-year experience;Hoppmann;Crit Ultrasound J,2015

2. Can we successfully teach novice junior doctors basic interventional ultrasound in a single focused training session?

3. Law YC , Knott T , Pick , et al. Simulation-based ultrasound training supported by annotations, haptics and linked multimodal views. Eg Vcbm 2015;167–172. doi: 10.2312/vcbm.20151220

4. Cognitive load imposed by ultrasound-facilitated teaching does not adversely affect gross anatomy learning outcomes;Jamniczky;Anat Sci,2016

5. Learning and teaching motor skills in regional anesthesia: a different perspective;Slater;Anesth Pain Med,2014

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