Wearable and Implantable Soft Bioelectronics: Device Designs and Material Strategies.

IF 7.6 2区 工程技术 Q1 CHEMISTRY, APPLIED Annual review of chemical and biomolecular engineering Pub Date : 2021-06-07 DOI:10.1146/annurev-chembioeng-101420-024336
Sung-Hyuk Sunwoo, Kyoung-Ho Ha, Sangkyu Lee, Nanshu Lu, Dae-Hyeong Kim
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引用次数: 56

Abstract

High-performance wearable and implantable devices capable of recording physiological signals and delivering appropriate therapeutics in real time are playing a pivotal role in revolutionizing personalized healthcare. However, the mechanical and biochemical mismatches between rigid, inorganic devices and soft, organic human tissues cause significant trouble, including skin irritation, tissue damage, compromised signal-to-noise ratios, and limited service time. As a result, profuse research efforts have been devoted to overcoming these issues by using flexible and stretchable device designs and soft materials. Here, we summarize recent representative research and technological advances for soft bioelectronics, including conformable and stretchable device designs, various types of soft electronic materials, and surface coating and treatment methods. We also highlight applications of these strategies to emerging soft wearable and implantable devices. We conclude with some current limitations and offer future prospects of this booming field.

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可穿戴与植入式软体生物电子学:装置设计与材料策略。
高性能可穿戴和植入式设备能够记录生理信号并实时提供适当的治疗,在个性化医疗保健的革命中发挥着关键作用。然而,刚性、无机器件和柔软、有机人体组织之间的机械和生化不匹配会造成严重的麻烦,包括皮肤刺激、组织损伤、信噪比受损和服务时间有限。因此,大量的研究工作一直致力于通过使用柔性和可拉伸的设备设计和软材料来克服这些问题。在这里,我们总结了最近软体生物电子学的代表性研究和技术进展,包括符合和可拉伸的器件设计,各种类型的软体电子材料,以及表面涂层和处理方法。我们还重点介绍了这些策略在新兴软可穿戴和植入式设备中的应用。最后,我们总结了目前的一些局限性,并对这一蓬勃发展的领域提出了未来的展望。
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来源期刊
Annual review of chemical and biomolecular engineering
Annual review of chemical and biomolecular engineering CHEMISTRY, APPLIED-ENGINEERING, CHEMICAL
CiteScore
16.00
自引率
0.00%
发文量
25
期刊介绍: The Annual Review of Chemical and Biomolecular Engineering aims to provide a perspective on the broad field of chemical (and related) engineering. The journal draws from disciplines as diverse as biology, physics, and engineering, with development of chemical products and processes as the unifying theme.
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