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薄膜压电微机械超声换能器在生物医学中的应用综述

Thin-Film Piezoelectric Micromachined Ultrasound Transducers in Biomedical Applications: A Review.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2024 Jun;71(6):622-637. doi: 10.1109/TUFFC.2024.3390807. Epub 2024 Jun 10.

DOI:10.1109/TUFFC.2024.3390807
PMID:38635378
Abstract

Thin-film piezoelectric micromachined ultrasound transducers (PMUTs) are an increasingly relevant and well-researched field, and their biomedical importance has been growing as the technology continues to mature. This review article briefly discusses their history in biomedical use, provides a simple explanation of their principles for newer readers, and sheds light on the materials selection for these devices. Primarily, it discusses the significant applications of PMUTs in the biomedical industry and showcases recent progress that has been made in each application. The biomedical applications covered include common historical uses of ultrasound such as ultrasound imaging, ultrasound therapy, and fluid sensing, but additionally new and upcoming applications such as drug delivery, photoacoustic imaging, thermoacoustic imaging, biometrics, and intrabody communication. By including a device comparison chart for different applications, this review aims to assist microelectromechanical systems (MEMS) designers that work with PMUTs by providing a benchmark for recent research works. Furthermore, it puts forth a discussion on the current challenges being faced by PMUTs in the biomedical field, current and likely future research trends, and opportunities for PMUT development areas, as well as sharing the opinions and predictions of the authors on the state of this technology as a whole. The review aims to be a comprehensive introduction to these topics without diving excessively deep into existing literature.

摘要

薄膜压电微加工超声换能器(PMUT)是一个日益相关和研究深入的领域,随着技术的不断成熟,其在生物医学中的重要性也在不断增加。本文简要讨论了其在生物医学中的历史应用,为新读者提供了简单的原理解释,并阐明了这些器件的材料选择。主要讨论了 PMUT 在生物医学行业中的重要应用,并展示了每个应用领域的最新进展。涵盖的生物医学应用包括超声的常见历史应用,如超声成像、超声治疗和流体感应,但此外还有新的和即将出现的应用,如药物输送、光声成像、热声成像、生物识别和体内通信。通过为不同应用提供设备比较图表,本综述旨在为使用 PMUT 的微机电系统(MEMS)设计师提供最近研究工作的基准,从而帮助他们。此外,还讨论了 PMUT 在生物医学领域目前面临的挑战、当前和未来可能的研究趋势,以及 PMUT 发展领域的机会,并分享了作者对整个技术现状的看法和预测。综述旨在全面介绍这些主题,而不会过度深入现有文献。

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