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A High-Speed Photoacoustic Tomography System based on a Commercial Ultrasound and a Custom Transducer Array

机译:基于商业超声和定制换能器阵列的高速光声层析成像系统

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Building photoacoustic imaging systems by using stand-alone ultrasound (US) units makes it convenient to take advantage of the state-of-the-art ultrasonic technologies. However, the sometimes limited receiving sensitivity and the comparatively narrow bandwidth of commercial US probes with elements driving long cables may not be sufficient for high quality photoacoustic imaging. In this work, a high-speed photoacoustic tomography (PAT) system has been developed using a commercial US unit and a custom built 128-element PVDF transducer array. Since the US unit supports simultaneous signal acquisition from 64 parallel receive channels, PAT data for synthetic image formation from a 64 or 128 element array aperture can be acquired after a single or dual laser firing, respectively. The PVDF array provides satisfactory receiving sensitivity and uniquely broad detection bandwidth, which enables good image quality for tomographic photoacoustic imaging. A specially designed 128-channel preamplifier board that connects the preamps directly to the PVDF elements not only enables impedance matching but also further elevates the signal-to-noise ratio in detecting weak photoacoustic signals. To examine the performance of this imaging system, experiments on phantoms were conducted and the results were compared with those acquired with commercial US probes.
机译:通过使用独立的超声(US)单元构建光声成像系统,可以方便地利用最新的超声技术。但是,有时,有限的接收灵敏度和带有驱动长电缆的元件的美国US探头的带宽相对较窄,可能不足以实现高质量的光声成像。在这项工作中,使用美国的商用设备和定制的128元素PVDF换能器阵列开发了高速光声层析成像(PAT)系统。由于US单元支持从64个并行接收通道同时进行信号采集,因此可以在单次或两次激光发射后分别从64个或128个元件阵列孔径中获取用于合成图像形成的PAT数据。 PVDF阵列可提供令人满意的接收灵敏度和独特的宽检测带宽,从而为断层成像光声成像提供良好的图像质量。专门设计的128通道前置放大器板将前置放大器直接连接到PVDF元件,不仅可以实现阻抗匹配,而且还可以在检测弱光声信号时进一步提高信噪比。为了检查该成像系统的性能,对人体模型进行了实验,并将结果与​​使用美国商业探针获得的结果进行了比较。

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