Beltzer Anne, Kölle Julia, Gil Miró Marta, Pleus Stefan, Krauss Collin, Haug Cornelia, Safary Elvis, Vetter Beatrice, Freckmann Guido
Institut für Diabetes-Technologie, Forschungs- und Entwicklungsgesellschaft mbH an der Universität Ulm, Ulm, Germany.
FIND, Geneva, Switzerland.
J Diabetes Sci Technol. 2025 Sep;19(5):1293-1301. doi: 10.1177/19322968241238146. Epub 2024 Mar 13.
Usability engineering analyzes the interaction between the intended users and a device. Its implementation is mandatory for manufacturers to obtain regulatory approval for the European market. The aim of this evaluation was assessing the role of usability testing in the development process. For this purpose, a continuous glucose monitoring (CGM) device under development was investigated to determine whether it could be used safely and effectively by the intended users.
Conduct of the usability testing was based on the international standard IEC 62366-1. Medical device use of CGM-experienced and non-experienced users (n = 15 each) was observed without initial training in use scenarios containing 18 tasks. The success rate of task completion was determined and the System Usability Scale (SUS) score was calculated from a questionnaire. A prototype of the FiberSense CGM System (EyeSense GmbH, Großostheim, Germany), comprising of a single-use sensor and a reusable detector, was investigated.
Most use errors made by both user groups were related to ease of handling of the reusable detectors. The SUS scores achieved in this study were below the pre-defined SUS score acceptance criterion of ≥68. The most frequently mentioned reason for use errors was an incomprehensible and non-chronological instructions for use (IFU).
The evaluation provides valuable insights on how to improve usability of the prototype device and demonstrates the value of conducting structured usability testing prior to product finalization. The results reflected areas for improvement of the user interface, mainly by restructuring the IFU, provision of an additional leaflet, and device training prior to use.
可用性工程分析目标用户与设备之间的交互。对于制造商而言,要获得欧洲市场的监管批准,实施可用性工程是强制性要求。本评估的目的是评估可用性测试在开发过程中的作用。为此,对一款正在研发的连续血糖监测(CGM)设备进行了调查,以确定目标用户能否安全有效地使用该设备。
可用性测试的开展基于国际标准IEC 62366-1。观察了有CGM使用经验和无CGM使用经验的用户(每组15人)在未接受初始培训的情况下,在包含18项任务的使用场景中使用该医疗设备的情况。确定任务完成成功率,并根据一份问卷计算系统可用性量表(SUS)得分。对FiberSense CGM系统(德国格罗斯奥斯特海姆的EyeSense GmbH公司)的一个原型进行了调查,该原型包括一个一次性传感器和一个可重复使用的探测器。
两个用户组出现的大多数使用错误都与可重复使用探测器的操作便利性有关。本研究中获得的SUS得分低于预先定义的SUS得分接受标准(≥68)。使用错误最常被提及的原因是使用说明书(IFU)难以理解且顺序混乱。
该评估为如何提高原型设备的可用性提供了有价值的见解,并证明了在产品定型前进行结构化可用性测试的价值。结果反映了用户界面需要改进的方面,主要是通过重新组织IFU、提供额外的宣传册以及在使用前进行设备培训。