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Review of Laser-Generated Ultrasound Transmitters and Their Applications to All-Optical Ultrasound Transducers and Imaging

机译:激光产生的超声发射器及其在全光学超声换能器和成像中的应用综述

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Medical ultrasound is an imaging technique that utilizes ultrasonic signals as information carriers, and has wide applications such as seeing internal body structures, finding a source of a disease, and examining pregnant women. The most commonly used ultrasonic transducer today is based on piezoelectricity. The piezoelectric transducer, however, may have a limited bandwidth and insufficient sensitivity for reduced element size. Laser-generated ultrasound (LGUS) technique is an effective way to resolve these issues. The LGUS approach based on photoacoustic effect is able to greatly enhance the bandwidth of ultrasound signals and has the potential for high-resolution imaging. High-amplitude LGUS could also be used for therapy to accomplish high precision surgery without an incision. Furthermore, LGUS in conjunction with optical detection of ultrasound allows all-optical ultrasound imaging (i.e., ultrasound is generated and received optically). The all-optical platform offers unique advantages in providing high-resolution information and in facilitating the construction of miniature probes for endoscopic ultrasound. In this article, a detailed review of the recent development of various LGUS transmitters is presented. In addition, a recent research interest in all-optical ultrasound imaging, as well as its applications, is also discussed.
机译:医学超声是一种利用超声信号作为信息载体的成像技术,具有广泛的用途,例如查看体内结构,发现疾病来源以及检查孕妇。当今最常用的超声换能器是基于压电的。然而,压电换能器可能具有有限的带宽和不足以减小元件尺寸的灵敏度。激光超声(LGUS)技术是解决这些问题的有效方法。基于光声效应的LGUS方法能够大大增强超声信号的带宽,并具有高分辨率成像的潜力。高幅LGUS也可用于治疗,无需切口即可完成高精度手术。此外,LGUS结合超声的光学检测可以实现全光学超声成像(即,超声是通过光学方式生成和接收的)。全光学平台在提供高分辨率信息和简化用于内窥镜超声的微型探头的构造方面具有独特的优势。在本文中,将详细介绍各种LGUS发射机的最新发展。另外,还讨论了对全光学超声成像及其应用的最新研究兴趣。

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