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用于神经病学临床教育的物理治疗学生 3D 模拟软件的设计规格和功能。

Design specifications and capabilities of a 3D simulation software for clinical education of physiotherapy students in the neurology department.

机构信息

Department of Health Information Management, School of Paramedical Sciences, AJA University of Medical Sciences, Tehran, Iran.

Department of Physiotherapy, School of Rehabilitation, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

BMC Med Educ. 2024 Aug 29;24(1):944. doi: 10.1186/s12909-024-05547-3.

Abstract

INTRODUCTION

In this revolutionized era, thanks to cutting-edge technological breakthroughs like 3-dimensional (3D) computerized environments, physiotherapy trainers can improve their knowledge and confidence by using such training tools. Hence, there is room for developing these technologies for training medical students to expand their skills and expertise. This study aims to identify the design requirements and key functionalities of a 3D simulation software for the clinical education of physiotherapy students in neurology departments.

METHOD

First, by carefully reviewing neurological books, scientific articles, curriculum, and medical records, and consulting with experts, a scenario was compiled. In the next step, a researcher-developed questionnaire was designed. Then, experts' opinions were considered to confirm the validity and reliability of the questionnaire. The designed questionnaire was distributed among several neurological physiotherapists. Finally, the information elements, contents, and functional capabilities of the 3D software were determined by analyzing the data obtained from the questionnaire.

FINDINGS

The main components for the design of physiotherapy educational software were identified based on the findings of the literature review, curriculum analysis, and medical record review. A survey of physiotherapy professors was conducted using a questionnaire created by the researcher in order to enhance the capabilities of simulation software and ascertain its primary functions. Following an analysis of the data from the distributed questionnaire, 37 essential features and contents have been proven to be more crucial than the rest for the creation of 3D simulation software. As a result, the essential and fundamental needs for the patient's training in reading their medical records and performing muscle strength assessments were recognized and extracted. Based on these findings, a researcher-developed scenario for the various real cases was then established. In the patient's medical record reading scenario, the student is required to read the patient's record in text format. Similarly, in the section on cranial nerves, pictures are utilised to reinforce the student's assessment skills in addition to textual content. Together with the audio and pop-up texts, the simulated 3D environment also offers training for the assessment of muscle strength.

CONCLUSION

As an educational tool, this software can enhance students' learning and assist in addressing the drawbacks of conventional teaching methods like lectures and hospital visits.

摘要

简介

在这个变革的时代,由于 3 维(3D)计算机化环境等尖端技术的突破,物理治疗师可以使用这些培训工具来提高他们的知识和信心。因此,为了培训医学生以扩大他们的技能和专业知识,有必要开发这些技术。本研究旨在确定用于神经病学部门物理治疗学生临床教育的 3D 模拟软件的设计要求和关键功能。

方法

首先,通过仔细审查神经学书籍、科学文章、课程和病历,并咨询专家,编写了一个场景。在下一步中,设计了一个由研究人员开发的问卷。然后,考虑专家的意见以确认问卷的有效性和可靠性。将设计好的问卷分发给几位神经物理治疗师。最后,通过分析从问卷中获得的数据,确定 3D 软件的信息元素、内容和功能能力。

结果

根据文献回顾、课程分析和病历审查的结果,确定了物理治疗教育软件的主要设计组件。使用研究人员创建的问卷对物理治疗教授进行了调查,以增强模拟软件的功能并确定其主要功能。对分发的问卷数据进行分析后,已证明 37 个基本功能和内容比其他功能和内容对于创建 3D 模拟软件更为关键。因此,认识到并提取了用于患者阅读病历和进行肌肉力量评估培训的基本和必要需求。在此基础上,为各种实际案例建立了研究人员开发的场景。在患者病历阅读场景中,学生需要以文本格式阅读患者的记录。同样,在颅神经部分,除了文本内容外,还使用图片来增强学生的评估技能。模拟 3D 环境还与音频和弹出文本一起提供肌肉力量评估培训。

结论

作为一种教育工具,该软件可以增强学生的学习能力,并有助于解决传统教学方法(如讲座和医院参观)的缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a93/11360853/5524b9184ce1/12909_2024_5547_Fig1_HTML.jpg

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