Suppr超能文献

即时超声教学:模拟和多媒体资源的作用日益凸显。

Point-of-care ultrasound education: the increasing role of simulation and multimedia resources.

机构信息

Department of Emergency Medicine, St Luke's-Roosevelt Hospital Center, 1111 Amsterdam Ave, New York, NY 10025 USA.

出版信息

J Ultrasound Med. 2014 Jan;33(1):27-32. doi: 10.7863/ultra.33.1.27.

Abstract

This article reviews the current technology, literature, teaching models, and methods associated with simulation-based point-of-care ultrasound training. Patient simulation appears particularly well suited for learning point-of-care ultrasound, which is a required core competency for emergency medicine and other specialties. Work hour limitations have reduced the opportunities for clinical practice, and simulation enables practicing a skill multiple times before it may be used on patients. Ultrasound simulators can be categorized into 2 groups: low and high fidelity. Low-fidelity simulators are usually static simulators, meaning that they have nonchanging anatomic examples for sonographic practice. Advantages are that the model may be reused over time, and some simulators can be homemade. High-fidelity simulators are usually high-tech and frequently consist of many computer-generated cases of virtual sonographic anatomy that can be scanned with a mock probe. This type of equipment is produced commercially and is more expensive. High-fidelity simulators provide students with an active and safe learning environment and make a reproducible standardized assessment of many different ultrasound cases possible. The advantages and disadvantages of using low- versus high-fidelity simulators are reviewed. An additional concept used in simulation-based ultrasound training is blended learning. Blended learning may include face-to-face or online learning often in combination with a learning management system. Increasingly, with simulation and Web-based learning technologies, tools are now available to medical educators for the standardization of both ultrasound skills training and competency assessment.

摘要

本文回顾了基于模拟的即时超声培训相关的技术、文献、教学模式和方法。患者模拟似乎特别适合学习即时超声,这是急诊医学和其他专业的必备核心能力。工作时间限制减少了临床实践的机会,而模拟则可以在将技能应用于患者之前多次进行练习。超声模拟器可分为 2 类:低保真度和高保真度。低保真度模拟器通常是静态模拟器,这意味着它们的超声实践使用的是不变的解剖示例。其优点是模型可以随着时间的推移而重复使用,并且一些模拟器可以自制。高保真度模拟器通常是高科技的,通常由许多计算机生成的虚拟超声解剖学案例组成,可以使用模拟探头进行扫描。这种类型的设备是商业生产的,价格更昂贵。高保真度模拟器为学生提供了一个积极和安全的学习环境,并使许多不同的超声案例的可重复标准化评估成为可能。本文回顾了使用低保真度与高保真度模拟器的优缺点。基于模拟的超声培训中使用的另一个概念是混合学习。混合学习可能包括面对面或在线学习,通常与学习管理系统相结合。随着模拟和基于网络的学习技术的发展,现在为医学教育者提供了工具,可用于标准化超声技能培训和能力评估。

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