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Using Task Models to Understand the Intersection of Numeracy Skills and Technical Competence With Medical Device Design

机译:使用任务模型了解医疗器械设计的数值技能和技术能力

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Task models are used in many different ways throughout the design and development of interactive systems. When the interactive systems are safety critical, task models can play an important role in ensuring system behaviours are consistent with user requirements, which may help to prevent errors. While task models can be used to describe a user's goals and the steps required to achieve that goal, to understand where user errors may occur we also need to consider the users' understanding of how to perform a task and how this relates to the system they are using. Our focus is on the use of medical devices such as syringe drivers and infusion pumps for intravenous medication, which forms a major part of hospital inpatient care throughout the world. While we might rely on software engineering and human factors techniques to ensure correctness of such devices, their use by medical personnel in practice includes other factors that are equally important. These include training medical personnel in the use of medical devices. Also numeracy education for medical staff to ensure that they are able to set up and perform the necessary calculations to convert prescribed medication into the appropriate values and measures for their delivery mechanisms. We have developed an approach that aims to bring together concepts of technology design (both functional correctness and usability concerns), numeracy and medication delivery competency. In order to do so we use task models as a common language that enables us to consider these different domains in a single way. We find that the ability to describe the two domains within a single process allows us to compare models of knowledge, tasks and use of devices, which can elicit potential mismatches and problems.
机译:在整个交互式系统的设计和开发中,任务模型以多种不同的方式使用。当交互式系统是安全关键时,任务模型可以在确保系统行为与用户要求一致中发挥重要作用,这可能有助于防止错误。虽然任务模型可用于描述用户的目标和实现该目标所需的步骤,以了解用户错误可能发生的位置,我们还需要考虑用户对如何执行任务的理解以及如何与系统相关联正在使用。我们的重点是使用用于静脉内药物的注射器驱动器和输液泵等医疗器械,这在全世界构成了医院住院护理的主要部分。虽然我们可能依赖于软件工程和人类因素技术,以确保这些设备的正确性,但他们在实践中的医务人员的使用包括同样重要的其他因素。这些包括培训医务人员使用医疗器械。还为医务人员算术教育,以确保他们能够建立并执行必要的计算,以处方药转换成他们的交付机制相应的价值观和措施。我们开发了一种旨在将技术设计(功能正确性和可用性问题的疑虑),算术和药物交付能力的概念集成。为此,我们将任务模型用作一种通用语言,使我们能够以单个方式考虑这些不同的域。我们发现,在单一进程中描述两个域的能力允许我们比较知识,任务和设备的模型,这些模型可以引起潜在的不匹配和问题。

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