Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers

Wearable strain sensors have attracted research interest owing to their potential within digital healthcare, offering smarter tracking, efficient diagnostics, and lower costs. Unlike rigid sensors, fiber‐based ones compete with their flexibility, durability, adaptability to body structures as well a...

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Main Authors: Zhang, J, Xu, B, Chen, K, Li, Y, Li, G, Liu, Z
Format: Journal article
Language:English
Published: Wiley Open Access 2024
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author Zhang, J
Xu, B
Chen, K
Li, Y
Li, G
Liu, Z
author_facet Zhang, J
Xu, B
Chen, K
Li, Y
Li, G
Liu, Z
author_sort Zhang, J
collection OXFORD
description Wearable strain sensors have attracted research interest owing to their potential within digital healthcare, offering smarter tracking, efficient diagnostics, and lower costs. Unlike rigid sensors, fiber‐based ones compete with their flexibility, durability, adaptability to body structures as well as eco‐friendliness to environment. Here, the sustainable fiber‐based wearable strain sensors for digital health are reviewed, and material, fabrication, and practical healthcare aspects are explored. Typical strain sensors predicated on various sensing modalities, be it resistive, capacitive, piezoelectric, or triboelectric, are explained and analyzed according to their strengths and weaknesses toward fabrication and applications. The applications in digital healthcare spanning from body area sensing networks, intelligent health management, and medical rehabilitation to multifunctional healthcare systems are also evaluated. Moreover, to create a more complete digital health network, wired and wireless methods of data collection and examples of machine learning are elaborated in detail. Finally, the prevailing challenges and prospective insights into the advancement of novel fibers, enhancement of sensing precision and wearability, and the establishment of seamlessly integrated systems are critically summarized and offered. This endeavor not only encapsulates the present landscape but also lays the foundation for future breakthroughs in fiber‐based wearable strain sensor technology within the domain of digital health.
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spelling oxford-uuid:93b9b035-917a-4a44-8c1e-f6d84ddc6e9e2024-07-20T16:24:38ZRevolutionizing digital healthcare networks with wearable strain sensors using sustainable fibersJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:93b9b035-917a-4a44-8c1e-f6d84ddc6e9eEnglishJisc Publications RouterWiley Open Access2024Zhang, JXu, BChen, KLi, YLi, GLiu, ZWearable strain sensors have attracted research interest owing to their potential within digital healthcare, offering smarter tracking, efficient diagnostics, and lower costs. Unlike rigid sensors, fiber‐based ones compete with their flexibility, durability, adaptability to body structures as well as eco‐friendliness to environment. Here, the sustainable fiber‐based wearable strain sensors for digital health are reviewed, and material, fabrication, and practical healthcare aspects are explored. Typical strain sensors predicated on various sensing modalities, be it resistive, capacitive, piezoelectric, or triboelectric, are explained and analyzed according to their strengths and weaknesses toward fabrication and applications. The applications in digital healthcare spanning from body area sensing networks, intelligent health management, and medical rehabilitation to multifunctional healthcare systems are also evaluated. Moreover, to create a more complete digital health network, wired and wireless methods of data collection and examples of machine learning are elaborated in detail. Finally, the prevailing challenges and prospective insights into the advancement of novel fibers, enhancement of sensing precision and wearability, and the establishment of seamlessly integrated systems are critically summarized and offered. This endeavor not only encapsulates the present landscape but also lays the foundation for future breakthroughs in fiber‐based wearable strain sensor technology within the domain of digital health.
spellingShingle Zhang, J
Xu, B
Chen, K
Li, Y
Li, G
Liu, Z
Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
title Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
title_full Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
title_fullStr Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
title_full_unstemmed Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
title_short Revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
title_sort revolutionizing digital healthcare networks with wearable strain sensors using sustainable fibers
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