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用于医学教育与培训的认知模拟器

Cognitive simulators for medical education and training.

作者信息

Kahol Kanav, Vankipuram Mithra, Smith Marshall L

机构信息

Human Machine Symbiosis Laboratory, Center for Cognition and Decision Making, Department of Biomedical Informatics, School of Computing and Informatics, Arizona State University, Tempe, 45 N 5th Street #235, Phoenix, AZ 85004, USA.

出版信息

J Biomed Inform. 2009 Aug;42(4):593-604. doi: 10.1016/j.jbi.2009.02.008. Epub 2009 Mar 6.

Abstract

Simulators for honing procedural skills (such as surgical skills and central venous catheter placement) have proven to be valuable tools for medical educators and students. While such simulations represent an effective paradigm in surgical education, there is an opportunity to add a layer of cognitive exercises to these basic simulations that can facilitate robust skill learning in residents. This paper describes a controlled methodology, inspired by neuropsychological assessment tasks and embodied cognition, to develop cognitive simulators for laparoscopic surgery. These simulators provide psychomotor skill training and offer the additional challenge of accomplishing cognitive tasks in realistic environments. A generic framework for design, development and evaluation of such simulators is described. The presented framework is generalizable and can be applied to different task domains. It is independent of the types of sensors, simulation environment and feedback mechanisms that the simulators use. A proof of concept of the framework is provided through developing a simulator that includes cognitive variations to a basic psychomotor task. The results of two pilot studies are presented that show the validity of the methodology in providing an effective evaluation and learning environments for surgeons.

摘要

用于磨练程序技能(如手术技能和中心静脉导管置入)的模拟器已被证明是医学教育工作者和学生的宝贵工具。虽然此类模拟是外科教育中的一种有效范式,但仍有机会在这些基本模拟中增加一层认知练习,以促进住院医师扎实的技能学习。本文描述了一种受神经心理学评估任务和具身认知启发的可控方法,用于开发腹腔镜手术的认知模拟器。这些模拟器提供心理运动技能训练,并在现实环境中完成认知任务带来额外挑战。描述了此类模拟器设计、开发和评估的通用框架。所提出的框架具有通用性,可应用于不同的任务领域。它与模拟器所使用的传感器类型、模拟环境和反馈机制无关。通过开发一个对基本心理运动任务包含认知变化的模拟器,提供了该框架的概念验证。给出了两项初步研究的结果,表明该方法在为外科医生提供有效评估和学习环境方面的有效性。

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