利用吸水产品中的湿度感应技术改善尿失禁管理和睡眠质量。

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine Pub Date : 2024-06-01 Epub Date: 2024-07-24 DOI:10.1177/09544119241263667
Jens Hellmold, Wim Vanderperren
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引用次数: 0

摘要

在护理设施(如疗养院和医院)中使用吸收产品来处理依赖性住户的尿失禁(UI)问题时,需要在白天和晚上经常进行例行检查,以确定是否需要更换产品。有必要及时更换饱和产品,以避免皮肤长期暴露在潮湿的吸收产品中、产生难闻的气味、产品泄漏以及使用者尴尬的时刻。人手有限、工作量大、护理需求高峰,这些挑战阻碍了对护理依赖人群的快速支持。本文介绍了为远程监控吸收产品的潮湿状态而开发的新型传感技术。Ontex 公司的 Orizon 系统可帮助护理人员确定日常护理工作的优先次序,避免夜间睡眠受到干扰,并有效防止渗漏。此外,监测数据还可用于了解个人的产品使用情况和失禁模式,帮助失禁专家为每位用户选择最佳产品并实施适当的如厕训练。
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Improving urinary incontinence management and sleep quality with wetness sensing technology in absorbent products.

Using absorbent products to manage the urinary incontinence (UI) of dependent residents in care facilities (such as nursing homes, and hospitals) requires frequent routine checks throughout the day and night to see if products need changing. Timely changes of saturated products are necessary to avoid long-lasting skin exposure to wet absorbent products, unpleasant odor, leaking of such products and embarrassing moments for the users. Limited staffing, high workload, and peaks on the demand for caregiving are challenges that hamper swift support for the care dependent population. This paper describes novel sensing technology that has been developed for monitoring the wet state of absorbent products remotely. The Orizon system by Ontex enables caregivers to prioritize care routines, avoid sleep disturbance at night and achieve effective leakage prevention. Moreover, the monitoring data can be used to understand the individual product usage and incontinence pattern of individuals, helping incontinence specialists to choose the optimal product and implement appropriate toilet training for each user.

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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
122
审稿时长
6 months
期刊介绍: The Journal of Engineering in Medicine is an interdisciplinary journal encompassing all aspects of engineering in medicine. The Journal is a vital tool for maintaining an understanding of the newest techniques and research in medical engineering.
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