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Value of Eye-Tracking Data for Classification of Information Processing–Intensive Handling Tasks: Quasi-Experimental Study on Cognition and User Interface Design

机译:信息处理密集型处理任务分类的眼跟踪数据的价值:对认知和用户界面设计的准实验研究

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摘要

BackgroundIn order to give a wide range of people the opportunity to ensure and support home care, one approach is to develop medical devices that are as user-friendly as possible. This allows nonexperts to use medical devices that were originally too complicated to use. For a user-centric development of such medical devices, it is essential to understand which user interface design best supports patients, caregivers, and health care professionals. ObjectiveUsing the benefits of mobile eye tracking, this work aims to gain a deeper understanding of the challenges of user cognition. As a consequence, its goal is to identify the obstacles to the usability of the features of two different designs of a single medical device user interface. The medical device is a patient assistance device for home use in peritoneal dialysis therapy. MethodsA total of 16 participants, with a subset of seniors (8/16, mean age 73.7 years) and young adults (8/16, mean age 25.0 years), were recruited and participated in this study. The handling cycle consisted of seven main tasks. Data analysis started with the analysis of task effectiveness for searching for error-related tasks. Subsequently, the in-depth gaze data analysis focused on these identified critical tasks. In order to understand the challenges of user cognition in critical tasks, gaze data were analyzed with respect to individual user interface features of the medical device system. Therefore, it focused on the two dimensions of dwell time and fixation duration of the gaze. ResultsIn total, 97% of the handling steps for design 1 and 96% for design 2 were performed correctly, with the main challenges being task 1 insert, task 2 connect, and task 6 disconnect for both designs. In order to understand the two analyzed dimensions of the physiological measurements simultaneously, the authors propose a new graphical representation. It distinguishes four different patterns to compare the eye movements associated with the two designs. The patterns identified for the critical tasks are consistent with the results of the task performance. ConclusionsThis study showed that mobile eye tracking provides insights into information processing in intensive handling tasks related to individual user interface features. The evaluation of each feature of the user interface promises an optimal design by combining the best found features. In this way, manufacturers are able to develop products that can be used by untrained people without prior knowledge. This would allow home care to be provided not only by highly qualified nurses and caregivers, but also by patients themselves, partners, children, or neighbors.
机译:背景为提供各种各样的人有机会确保和支持家庭护理,一种方法是开发尽可能友好的医疗器械。这允许非普通使用最初经过复杂的医疗设备。为了以用户为中心的这种医疗设备的开发,必须了解哪种用户界面设计最能支持患者,护理人员和医疗保健专业人员。对于移动眼追踪的好处,这项工作旨在更深入地了解用户认知挑战。因此,其目标是识别对单个医疗设备用户界面的两种不同设计的功能的障碍。医疗设备是患者用于家庭在腹膜透析疗法的患者辅助装置。 MethaSA共有16名参与者,招募并参加了这项研究,有16名参与者(8/16,平均年龄73.7岁)和年轻人(8/16,平均年龄25.0岁)。处理周期包括七个主要任务。数据分析始于分析任务效果以搜索与错误相关的任务。随后,深入的凝视数据分析专注于这些识别的关键任务。为了了解临界任务中用户认知的挑战,关于医疗设备系统的个体用户界面特征分析了凝视数据。因此,它集中在凝视的停留时间和固定持续时间的两个维度上。结果总共有97%的设计1和96%的设计2的处理步骤进行了正确,主要挑战是任务1插入,任务2连接和任务6对两种设计断开连接。为了了解生理测量的两种分析的尺寸同时,作者提出了一种新的图形表示。它区分了四种不同的模式来比较与两种设计相关的眼睛运动。为关键任务所识别的模式与任务性能的结果一致。结论Strhis研究表明,移动眼跟踪在与个别用户界面特征相关的密集处理任务中提供了信息处理的见解。通过组合最佳找到的功能,对用户界面的每个特征的评估应该是最佳设计。通过这种方式,制造商能够开发未经认识的未经培养的人员可以使用的产品。这将允许家庭照顾不仅由高素质的护士和护理人员提供,而且还由患者自己,合作伙伴,儿童或邻居提供。

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