Suppr超能文献

用于教育的电子学习工具:监管方面、放射学的当前应用及未来前景。

E-learning tools for education: regulatory aspects, current applications in radiology and future prospects.

作者信息

Pinto A, Selvaggi S, Sicignano G, Vollono E, Iervolino L, Amato F, Molinari A, Grassi R

机构信息

Unità Operativa a Struttura Complessa di Radiologia Generale e di Pronto Soccorso, Dipartimento di Diagnostica per Immagini, Azienza Ospedaliera di Rilievo Nazionale, A. Cardarelli, Napoli, Italy.

出版信息

Radiol Med. 2008 Feb;113(1):144-57. doi: 10.1007/s11547-008-0227-z. Epub 2008 Feb 25.

Abstract

PURPOSE

E-learning, an abbreviation of electronic learning, indicates the provision of education and training on the Internet or the World Wide Web. The impact of networks and the Internet on radiology is undoubtedly important, as it is for medicine as a whole. The Internet offers numerous advantages compared with other mass media: it provides access to a large amount of information previously known only to individual specialists; it is flexible, permitting the use of images or video; and it allows linking to Web sites on a specific subject, thus contributing to further expand knowledge. Our purpose is to illustrate the regulatory aspects (including Internet copyright laws), current radiological applications and future prospects of e-learning. Our experience with the installation of an e-learning platform is also presented.

MATERIALS AND METHODS

We performed a PubMed search on the published literature (without time limits) dealing with e-learning tools and applications in the health sector with specific reference to radiology. The search included all study types in the English language with the following key words: e-learning, education, teaching, online exam, radiology and radiologists. The Fiaso study was referred to for the regulatory aspects of e-learning.

RESULTS

The application of e-learning to radiology requires the development of a model that involves selecting and creating e-learning platforms, creating and technologically adapting multimedia teaching modules, creating and managing a unified catalogue of teaching modules, planning training actions, defining training pathways and Continuing Education in Medicine (CME) credits, identifying levels of teaching and technological complexity of support tools, sharing an organisational and methodological model, training the trainers, operators' participation and relational devices, providing training, monitoring progress of the activities, and measuring the effectiveness of training. Since 2004, a platform--LiveLearning--has been used at our university: this is a Web-oriented application, that is, an Internet software solution that users can access through a Web browser. The pages displayed by the browser are dynamically generated through interaction with a database that collects both data required for the application to work and data related to the courses provided. There are different approaches to developing applications that use databases to store information. The selected approach is based on a modular three-level architecture divided into presentation level, intermediate level, and data level. The LiveLearning platform includes modules to manage multimedia contents and to interface with the streaming server so that the student can access the training contents directly from the platform interfaces. Furthermore, the platform offers its users different modules: Teaching Units, Documents, Forums, and Chats. By appropriately combining these modules, customised training can be devised based on specific requirements.

CONCLUSIONS

The increasing diffusion of continuous education will reduce the costs of e-learning and make this training method, which helps keep pace with technological progress, more attractive, with significant professional gains for radiologists.

摘要

目的

电子学习(e-learning)是电子学习的缩写,指在互联网或万维网上提供教育和培训。网络和互联网对放射学的影响无疑是重要的,对整个医学领域也是如此。与其他大众媒体相比,互联网具有诸多优势:它能提供大量以前只有个别专家才知道的信息;它很灵活,允许使用图像或视频;它能链接到特定主题的网站,从而有助于进一步拓展知识。我们的目的是阐述电子学习的监管方面(包括互联网版权法)、当前放射学应用以及未来前景。还介绍了我们安装电子学习平台的经验。

材料与方法

我们在PubMed上搜索了已发表的文献(无时间限制),这些文献涉及卫生领域的电子学习工具和应用,特别提及放射学。搜索包括所有英文研究类型,关键词如下:电子学习、教育、教学、在线考试、放射学和放射科医生。关于电子学习的监管方面参考了菲亚索研究。

结果

将电子学习应用于放射学需要开发一种模式,该模式包括选择和创建电子学习平台、创建并在技术上调整多媒体教学模块、创建和管理统一的教学模块目录、规划培训行动、定义培训路径和医学继续教育(CME)学分、确定支持工具的教学和技术复杂程度级别、共享组织和方法模型、培训培训人员、操作人员的参与和关系设备、提供培训、监测活动进展以及衡量培训效果。自2004年以来,我们大学一直在使用一个名为LiveLearning的平台:这是一个面向网络的应用程序,即一种互联网软件解决方案,用户可以通过网络浏览器访问。浏览器显示的页面是通过与一个数据库交互动态生成的,该数据库收集应用程序运行所需的数据以及与所提供课程相关的数据。开发使用数据库存储信息的应用程序有不同方法。所选方法基于一种模块化的三级架构,分为表示层、中间层和数据层。LiveLearning平台包括管理多媒体内容和与流式服务器接口的模块,以便学生可以直接从平台界面访问培训内容。此外,该平台为用户提供不同模块:教学单元、文档、论坛和聊天。通过适当地组合这些模块,可以根据特定要求设计定制培训。

结论

持续教育的日益普及将降低电子学习的成本,使这种有助于跟上技术进步的培训方法更具吸引力,给放射科医生带来显著的专业收益。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验