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A Modular and Extensible Architecture Integrating Sensors, Dynamic Displays of Anatomy and Physiology, and Automated Instruction for Innovations in Clinical Education

机译:模块化和可扩展的体系结构,集成了传感器,动态显示的解剖学和生理学以及自动指导的临床教育创新

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摘要

Adoption of simulation in healthcare education has increased tremendously over the past two decades. However, the resources necessary to perform simulation are immense. Simulators are large capital investments and require specialized training for both instructors and simulation support staff to develop curriculum using the simulator and to use the simulator to train students. Simulators require staff to run the simulator, and instructors must always be present to guide and assess student performance. Current simulators do not support self-learning by students. Thus, the expensive simulators sit idle most of the day. Furthermore, simulators are minimally customizable, resulting in programs often being required to purchase simulators that have more functions and features than needed or that cannot be upgraded as needs change.;This dissertation presents the development of BodyExplorer, a system designed to address limitations of current simulators by reducing the resources required to support simulation in healthcare education, enabling self-use by students, and providing an architecture to support modular and extensible simulator development and upgrades. This dissertation discusses BodyExplorer's initial prototype design, integration, and verification, as well as development of the modular architecture for integrating sensors, dynamic displays of anatomy and physiology, and automated instruction.;Novel sensor systems were integrated to measure user actions while performing (simulated) medication administration, cricoid pressure application, and endotracheal intubation on a simulation mannequin. Dynamic displays of anatomy and physiology, showing animations of breathing lungs or a beating heart, for example, were developed and integrated into BodyExplorer. Projected augmented reality is used to show users underlying anatomy and physiology on the surface of the mannequin, allowing users to see the internal consequences of their actions. An interface for supporting self-use and showing additional views of anatomy was incorporated using a mobile display. Using the projected images, mobile display, and audio output, a virtual instructor was developed to provide automated instructions to users based upon real-time sensor measurements.;Development of BodyExplorer was performed iteratively and included feedback from endusers throughout development using user-centered design principles. The mixed-methods results from three usability testing sessions with end-users at two academic institutions will be presented, along with the rationale for design decisions that derived from the results. Built upon feedback received during usability testing, the results from two scenarios of automated instruction will be provided by demonstrating examples of learning to apply cricoid pressure and learning to administer (simulated) medications to control heart rate. Discussion will also be provided regarding how the automated instruction techniques can be extended to provide training in other healthcare applications.
机译:在过去的二十年中,模拟在医疗保健教育中的采用已大大增加。但是,执行仿真所需的资源是巨大的。模拟器是一项巨大的资本投资,需要对教师和模拟支持人员进行专门培训,以使用模拟器开发课程并使用模拟器来培训学生。模拟器需要人员来运行模拟器,并且必须始终有教师在场以指导和评估学生的表现。当前的模拟器不支持学生的自学。因此,昂贵的模拟器一天中大部分时间都处于闲置状态。此外,仿真器的可定制性最低,导致购买具有更多功能和特性或无法随需求变化而无法升级的仿真器的程序通常是必需的。本论文介绍了BodyExplorer的开发,该系统旨在解决当前的局限性通过减少支持医疗教育中的模拟所需的资源,使学生能够自用以及提供支持模块化和可扩展的模拟器开发和升级的体系结构,来创建模拟器。本文讨论了BodyExplorer的初始原型设计,集成和验证,以及用于集成传感器,解剖学和生理学的动态显示以及自动化指令的模块化体系结构的开发。集成了新颖的传感器系统以在执行(模拟)时测量用户的行为)药物注射,环压施加和模拟人体模型上的气管插管。开发了动态解剖学和生理学显示,例如显示了呼吸肺部或跳动的心脏的动画,并将其集成到BodyExplorer中。投影增强现实用于向用户显示人体模型表面上的基本解剖结构和生理学,从而使用户可以看到其动作的内部后果。使用移动显示器并入了用于支持自用并显示其他解剖视图的界面。通过使用投影的图像,移动显示和音频输出,开发了虚拟指导员,可基于实时传感器测量为用户提供自动指导。BodyExplorer的开发是反复进行的,并包括在整个开发过程中使用以用户为中心的设计的最终用户的反馈原则。将介绍在两个学术机构与最终用户进行的三个可用性测试会话中得出的混合方法结果,以及从结果中得出的设计决策依据。基于可用性测试期间收到的反馈,将通过演示学习施加环压和学习管理(模拟)药物以控制心律的示例来提供两种自动化教学方案的结果。还将讨论如何扩展自动教学技术以提供其他医疗保健应用方面的培训。

著录项

  • 作者

    Nelson, Douglas Allen, Jr.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Biomedical engineering.;Health sciences.;Educational technology.;Health education.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:46

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