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崭新时代:贴合式超声电子。

An Emerging Era: Conformable Ultrasound Electronics.

机构信息

Media Lab, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

出版信息

Adv Mater. 2024 Feb;36(8):e2307664. doi: 10.1002/adma.202307664. Epub 2023 Dec 6.

Abstract

Conformable electronics are regarded as the next generation of personal healthcare monitoring and remote diagnosis devices. In recent years, piezoelectric-based conformable ultrasound electronics (cUSE) have been intensively studied due to their unique capabilities, including nonradiative monitoring, soft tissue imaging, deep signal decoding, wireless power transfer, portability, and compatibility. This review provides a comprehensive understanding of cUSE for use in biomedical and healthcare monitoring systems and a summary of their recent advancements. Following an introduction to the fundamentals of piezoelectrics and ultrasound transducers, the critical parameters for transducer design are discussed. Next, five types of cUSE with their advantages and limitations are highlighted, and the fabrication of cUSE using advanced technologies is discussed. In addition, the working function, acoustic performance, and accomplishments in various applications are thoroughly summarized. It is noted that application considerations must be given to the tradeoffs between material selection, manufacturing processes, acoustic performance, mechanical integrity, and the entire integrated system. Finally, current challenges and directions for the development of cUSE are highlighted, and research flow is provided as the roadmap for future research. In conclusion, these advances in the fields of piezoelectric materials, ultrasound transducers, and conformable electronics spark an emerging era of biomedicine and personal healthcare.

摘要

顺应电子被认为是下一代个人医疗保健监测和远程诊断设备。近年来,基于压电的顺应性超声电子(cUSE)因其独特的能力而受到了广泛的研究,包括非辐射监测、软组织成像、深信号解码、无线功率传输、便携性和兼容性。本综述提供了对用于生物医学和医疗保健监测系统的 cUSE 的全面了解,并对其最近的进展进行了总结。在介绍压电和超声换能器的基础原理之后,讨论了换能器设计的关键参数。接下来,突出了五种具有优势和局限性的 cUSE 类型,并讨论了使用先进技术制造 cUSE。此外,还彻底总结了 cUSE 的工作功能、声性能以及在各种应用中的成就。需要注意的是,在材料选择、制造工艺、声性能、机械完整性和整个集成系统之间必须权衡利弊。最后,突出了 cUSE 发展的当前挑战和方向,并提供了研究流程作为未来研究的路线图。总之,这些在压电材料、超声换能器和顺应性电子领域的进展引发了生物医学和个人医疗保健的新兴时代。

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