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采用优化声学组合器的同步双模态光声与谐波超声显微镜。

Simultaneous dual-modal photoacoustic and harmonic ultrasound microscopy with an optimized acoustic combiner.

作者信息

Zhu Jingyi, Chen Jiangbo, Amjadian Mohammadreza, Liang Siyi, Qu Zheng, Wang Yue, Zhang Yachao, Wang Lidai

机构信息

Department of Biomedical Engineering, City University of Hong Kong, 83 Tat Chee Ave, Kowloon, Hong Kong SAR, China.

Department of Chemical and Biological Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China.

出版信息

Biomed Opt Express. 2023 Mar 24;14(4):1626-1635. doi: 10.1364/BOE.484038. eCollection 2023 Apr 1.

Abstract

Simultaneous photoacoustic (PA) and ultrasound (US) imaging provides rich optical and acoustic contrasts with high sensitivity, specificity, and resolution, making it a promising tool for diagnosing and assessing various diseases. However, the resolution and penetration depth tend to be contradictory due to the increased attenuation of high-frequency ultrasound. To address this issue, we present simultaneous dual-modal PA/US microscopy with an optimized acoustic combiner that can maintain high resolution while improving the penetration of ultrasound imaging. A low-frequency ultrasound transducer is used for acoustic transmission, and a high-frequency transducer is used for PA and US detection. An acoustic beam combiner is utilized to merge the transmitting and receiving acoustic beams with a predetermined ratio. By combining the two different transducers, harmonic US imaging and high-frequency photoacoustic microscopy are implemented. experiments on the mouse brain demonstrate the simultaneous PA and US imaging ability. The harmonic US imaging of the mouse eye reveals finer iris and lens boundary structures than conventional US imaging, providing a high-resolution anatomical reference for co-registered PA imaging.

摘要

同步光声(PA)和超声(US)成像具有丰富的光学和声学对比度,灵敏度、特异性和分辨率高,使其成为诊断和评估各种疾病的有前景的工具。然而,由于高频超声衰减增加,分辨率和穿透深度往往相互矛盾。为了解决这个问题,我们提出了一种同步双模态PA/US显微镜,它具有优化的声学组合器,能够在提高超声成像穿透深度的同时保持高分辨率。低频超声换能器用于声传输,高频换能器用于PA和US检测。利用声束组合器以预定比例合并发射和接收声束。通过组合两种不同的换能器,实现了谐波US成像和高频光声显微镜。对小鼠大脑的实验证明了同步PA和US成像能力。小鼠眼睛的谐波US成像显示出比传统US成像更精细的虹膜和晶状体边界结构,为共配准的PA成像提供了高分辨率的解剖学参考。

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