Skin sensing and wearable technology as tools to measure atopic dermatitis severity.

Q3 Medicine
Skin health and disease Pub Date : 2024-08-15 eCollection Date: 2024-10-01 DOI:10.1002/ski2.449
Yasmin Khan, Alexandar Todorov, Russel Torah, Stephen Beeby, Michael Roger Ardern-Jones
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Abstract

Wearable medical technology encompasses a range of electronic devices that act as biosensors. Atopic dermatitis (AD) is the commonest inflammatory skin disease and represents an important area of need in which to leverage the power of wearable biosensor technology, especially as the impact of COVID-19 increases the likelihood of virtual consultations becoming an integrated part of clinical practice. The aim of this review is to systematically define the published evidence for the utility of wearable biosensors in assessment and management of atopic dermatitis (AD). A systematic literature search was conducted for publications from 1995 onwards for 'sensor' OR 'sensing' OR 'biosensor' OR 'biomarker'. Results were combined ('AND') with a search for 'wearable' OR 'actigraphy' OR 'Internet of things' OR 'microneedle' OR 'patch' OR 'e-textile' OR 'smart textile' and atopic dermatitis (MESH terms). Fifty seven abstracts were identified from the database search of which 39 were selected for detailed review. Broadly, wearable sensing systems in atopic dermatitis were split into three categories: wearable biosensor modules (actigraphy and smartwatches), clothing and integrated fabrics placed onto the epidermis and intradermal or subcutaneous sensors. The best evidence for correlation with AD disease severity was with actigraphy measurements of itch. However, newer approaches including sensing skin barrier function, inflammation and small molecule analysis as well as employing artificial intelligence offer more potential for advanced disease monitoring. Skin diseases, specifically AD, stand to benefit greatly from wearable technology, because of the ease of direct contact to the skin, the high prevalence of the disease and the large unmet need for better disease control in this group. However, important emphasis must be placed on validating the correlation of data from such technology with patient-reported outcomes. Wearable biosensors offer a huge potential to deliver better diagnostics, monitoring and treatment outcomes for patients.

将皮肤传感和可穿戴技术作为测量特应性皮炎严重程度的工具。
可穿戴医疗技术包括一系列充当生物传感器的电子设备。特应性皮炎(AD)是最常见的炎症性皮肤病,是需要利用可穿戴生物传感器技术的一个重要领域,尤其是在 COVID-19 的影响下,虚拟会诊更有可能成为临床实践的一个组成部分。本综述旨在系统地界定已发表的可穿戴生物传感器在特应性皮炎(AD)评估和管理中的实用性证据。我们以 "传感器 "或 "传感 "或 "生物传感器 "或 "生物标记 "为关键词,对 1995 年以来发表的文献进行了系统性检索。将搜索结果与 "可穿戴 "或 "动作计 "或 "物联网 "或 "微针 "或 "贴片 "或 "电子纺织品 "或 "智能纺织品 "和特应性皮炎(MESH术语)进行合并("AND")。通过数据库搜索,确定了 57 篇摘要,并从中选出 39 篇进行详细审查。从广义上讲,特应性皮炎中的可穿戴传感系统可分为三类:可穿戴生物传感器模块(动作计和智能手表)、服装和表皮集成织物以及皮内或皮下传感器。最能证明与注意力缺失症疾病严重程度相关的是痒的行为测量法。不过,包括感知皮肤屏障功能、炎症和小分子分析以及采用人工智能在内的新方法为先进的疾病监测提供了更多潜力。皮肤病,特别是注意力缺失症,将从可穿戴技术中获益匪浅,因为该技术易于直接接触皮肤,发病率高,而且该群体对更好地控制疾病的需求尚未得到满足。不过,必须重视验证此类技术的数据与患者报告结果之间的相关性。可穿戴生物传感器在为患者提供更好的诊断、监测和治疗效果方面潜力巨大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.70
自引率
0.00%
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审稿时长
10 weeks
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