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基于超声相机的实时全场光声成像。

Real-time full-field photoacoustic imaging using an ultrasonic camera.

机构信息

Northwestern University, Department of Mechanical Engineering, 2137 North Tech Drive, Evanston, Illinois 60208, USA.

出版信息

J Biomed Opt. 2010 Mar-Apr;15(2):021318. doi: 10.1117/1.3420079.

Abstract

A photoacoustic imaging system that incorporates a commercial ultrasonic camera for real-time imaging of two-dimensional (2-D) projection planes in tissue at video rate (30 Hz) is presented. The system uses a Q-switched frequency-doubled Nd:YAG pulsed laser for photoacoustic generation. The ultrasonic camera consists of a 2-D 12 x 12 mm CCD chip with 120 x 120 piezoelectric sensing elements used for detecting the photoacoustic pressure distribution radiated from the target. An ultrasonic lens system is placed in front of the chip to collect the incoming photoacoustic waves, providing the ability for focusing and imaging at different depths. Compared with other existing photoacoustic imaging techniques, the camera-based system is attractive because it is relatively inexpensive and compact, and it can be tailored for real-time clinical imaging applications. Experimental results detailing the real-time photoacoustic imaging of rubber strings and buried absorbing targets in chicken breast tissue are presented, and the spatial resolution of the system is quantified.

摘要

本文介绍了一种光声成像系统,该系统结合了商用超声相机,可实现组织中二维(2-D)投影平面的实时成像,视频速率(30 Hz)。该系统使用 Q 开关倍频 Nd:YAG 脉冲激光进行光声产生。超声相机由一个 2-D 12 x 12 毫米 CCD 芯片组成,具有 120 x 120 个压电传感元件,用于检测从目标辐射的光声压力分布。一个超声透镜系统放置在芯片前面,用于收集传入的光声波,提供在不同深度聚焦和成像的能力。与其他现有的光声成像技术相比,基于相机的系统具有吸引力,因为它相对便宜且紧凑,并且可以针对实时临床成像应用进行定制。本文介绍了详细的实时光声成像实验结果,包括橡胶弦和鸡胸脯组织中埋入吸收目标的成像,以及系统的空间分辨率的量化。

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