Quantifying Patient Capabilities and Setting the Stage for Future Development: Insights from a Sensor-Augmented Simulated Use Study with Pen Injectors.

IF 1.3 Q4 ENGINEERING, BIOMEDICAL Medical Devices-Evidence and Research Pub Date : 2024-07-31 eCollection Date: 2024-01-01 DOI:10.2147/MDER.S478141
Jakob Lange, Andreas E Schneider, Christoph Jordi
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Abstract

Background: While formative and summative usability testing is essential to confirm safe and effective product use, it may not be sufficient to comprehensively understand user capabilities and limitations in device interactions. Therefore, this research aims to quantify user handling forces for different device handling steps of pen injectors through sensor-augmented simulated use studies.

Research design and methods: The study involved 46 participants who were divided into two groups: a healthy control group and a group of users with dexterity impairments. All participants were instructed to perform simulated handling steps using non-functional dummy devices equipped with force and torque sensors. Each handling step was performed twice: first at what participants considered a comfortable force level and then at their maximum force. The study then analyzed force data to investigate the impact of user characteristics and device geometry on force exertion during the different handling steps.

Results: The study demonstrates differences in the perceived comfortable and maximum force levels between the control and patient groups. These force levels decrease slightly with the user's age and level of dexterity impairment. Furthermore, the forces applied by the users are dependent on the geometry of the device and the holding pattern.

Conclusion: The results highlight the significance of sensor-augmented simulated use studies as a tool for providing quantitative insights into users' ability to exert force while handling self-injection devices. These data offer comprehensive insights that inform the definition of performance requirements and specifications for injection device design, thereby supporting the advancement of future self-injection devices.

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量化患者能力,为未来发展奠定基础:笔式注射器传感器增强模拟使用研究的启示。
背景:虽然形成性和总结性可用性测试对于确认产品使用的安全性和有效性至关重要,但它可能不足以全面了解用户在设备交互过程中的能力和局限性。因此,本研究旨在通过传感器增强的模拟使用研究,量化用户操作笔式注射器不同设备步骤时的力:研究涉及 46 名参与者,他们被分为两组:健康对照组和有灵活性障碍的用户组。所有参与者在指导下使用装有力和扭矩传感器的非功能性假人装置进行模拟操作步骤。每个操作步骤都要进行两次:首先在参与者认为舒适的力度水平上进行,然后在最大力度上进行。然后,研究人员分析了力数据,以调查用户特征和设备几何形状对不同操作步骤中用力的影响:结果:研究表明,对照组和患者组在感知到的舒适力和最大力水平上存在差异。随着使用者年龄的增长和灵巧性受损程度的增加,这些力水平会略有下降。此外,用户施加的力取决于设备的几何形状和握持模式:研究结果凸显了传感器辅助模拟使用研究的重要性,它是一种定量了解使用者在操作自我注射装置时施力能力的工具。这些数据为确定注射装置设计的性能要求和规格提供了全面的见解,从而支持了未来自我注射装置的发展。
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来源期刊
Medical Devices-Evidence and Research
Medical Devices-Evidence and Research ENGINEERING, BIOMEDICAL-
CiteScore
2.80
自引率
0.00%
发文量
41
审稿时长
16 weeks
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