van Meurs Willem W L, Antonius Timothy A J
1Cardiovascular and Respiratory Physiology Group, Faculty of Science and Technology, University of Twente, Enschede, The Netherlands.
2Department of Neonatology, Radboudumc Amalia Children's Hospital, Nijmegen, The Netherlands.
Adv Simul (Lond). 2018 Dec 20;3:27. doi: 10.1186/s41077-018-0085-2. eCollection 2018.
Acute care providers intervening on fragile patients face many knowledge and information related challenges. Explanation based on causal chains of events has limitations when applied to complex physiological systems, and model-driven educational software may overwhelm the learner with information. We introduce a new concept and educational technology to facilitate understanding, reasoning, and communication in the clinical environment. The aim is to grasp complex physiology in a more intuitive way.
An EM is a representation of relevant physiologic processes that provides insight into the relationships between therapeutic interventions and monitored variables, and their dependency on incidents and pathologies. We systematically analyze types of information incorporated into models and displayed in simulations and consider their explanatory relevance.
A conceptual model (diagram) of the normal neonatal cardiorespiratory system is adapted to reflect TGA and implemented in animated, interactive software.
The use of this model is illustrated via the explanation to pediatric residents of the relationships between blood pressures, blood flow rates, ventilation, oxygen saturation, and oxygen distribution in a neonate with TGA. Learners explore clinical scenarios and effects of therapeutic interventions.
Explanatory models hold promise as mental models for clinical practice and could possibly play a role in clinical decision making in neonatal intensive care and beyond.
The software is freely available via the web addendum: https://www.dropbox.com/sh/ciufq5rqxgs9bkt/AAC7oKsvkEr73eYUJkx0pZ1Ya?dl=0.
为脆弱患者提供急性护理的医护人员面临许多与知识和信息相关的挑战。基于事件因果链的解释在应用于复杂生理系统时存在局限性,而模型驱动的教育软件可能会让学习者信息过载。我们引入一种新的概念和教育技术,以促进临床环境中的理解、推理和交流。目的是以更直观的方式掌握复杂的生理学知识。
解释模型(EM):解释模型是相关生理过程的一种表示,它能深入了解治疗干预与监测变量之间的关系,以及它们对事件和病理状况的依赖性。我们系统地分析纳入模型并在模拟中显示的信息类型,并考虑它们的解释相关性。
大动脉转位(TGA):正常新生儿心肺系统的概念模型(图表)经过调整以反映大动脉转位,并在动画交互式软件中实现。
通过向儿科住院医师解释患有大动脉转位的新生儿的血压、血流速度、通气、血氧饱和度和氧分布之间的关系,来说明该模型的用途。学习者可以探索临床场景和治疗干预的效果。
解释模型有望成为临床实践的心理模型,并可能在新生儿重症监护及其他领域的临床决策中发挥作用。
该软件可通过以下网络附录免费获取:https://www.dropbox.com/sh/ciufq5rqxgs9bkt/AAC7oKsvkEr73eYUJkx0pZ1Ya?dl=0 。