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磁共振仿真教育:实际课堂体验的定量评估。

Magnetic Resonance Simulation in Education: Quantitative Evaluation of an Actual Classroom Experience.

机构信息

ETSI Telecomunicación, University of Valladolid, 47011 Valladolid, Spain.

Hospital Clínico Universitario, 47003 Valladolid, Spain.

出版信息

Sensors (Basel). 2021 Sep 8;21(18):6011. doi: 10.3390/s21186011.

Abstract

Magnetic resonance is an imaging modality that implies a high complexity for radiographers. Despite some simulators having been developed for training purposes, we are not aware of any attempt to quantitatively measure their educational performance. The present study gives an answer to the question: Does an MRI simulator built on specific functional and non-functional requirements help radiographers learn MRI theoretical and practical concepts better than traditional educational method based on lectures? Our study was carried out in a single day by a total of 60 students of a main hospital in Madrid, Spain. The experiment followed a randomized pre-test post-test design with a control group that used a traditional educational method, and an experimental group that used our simulator. Knowledge level was assessed by means of an instrument with evidence of validity in its format and content, while its reliability was analyzed after the experiment. Statistical differences between both groups were measured. Significant statistical differences were found in favor of the participants who used the simulator for both the post-test score and the gain (difference between post-test and pre-test scores). The effect size turned out to be significant as well. In this work we evaluated a magnetic resonance simulation paradigm as a tool to help in the training of radiographers. The study shows that a simulator built on specific design requirements is a valuable complement to traditional education procedures, backed up with significant quantitative results.

摘要

磁共振成像是一种成像方式,对放射技师来说具有很高的复杂性。尽管已经开发了一些模拟器用于培训目的,但我们不知道是否有任何尝试来定量衡量它们的教育性能。本研究回答了一个问题:基于特定功能和非功能要求构建的 MRI 模拟器是否比基于讲座的传统教育方法更有助于放射技师学习 MRI 的理论和实践概念?我们的研究在西班牙马德里的一家主要医院的 60 名学生中进行了一天。实验采用随机预测试后测试设计,对照组采用传统教育方法,实验组采用我们的模拟器。知识水平通过具有格式和内容证据的工具进行评估,而其可靠性在实验后进行分析。测量了两组之间的统计差异。使用模拟器的参与者在测试后的得分和收益(测试后得分与测试前得分之间的差异)方面都存在显著的统计学差异。效果大小也很显著。在这项工作中,我们评估了磁共振模拟范例作为一种帮助放射技师培训的工具。研究表明,基于特定设计要求构建的模拟器是对传统教育程序的有价值的补充,并且具有显著的定量结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fc3/8468339/e351b82a46b1/sensors-21-06011-g0A1.jpg

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