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Dynamic beamforming for large area scan in array-based photoacoustic microscopy

机译:基于阵列的光声显微镜中用于大面积扫描的动态波束形成

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摘要

We explore the use of a beamforming method intended for large-area scanning in optical-resolution photoacoustic microscopy. It has been evaluated in a experimental setup that comprises a low-cost laser diode and a phase array with a 128-elements linear probe. Three different beamforming strategies are discussed: no-beamforming, static beamforming and dynamic beamforming. The method has been tested in gelatine-based phantoms as well as ex-vivo organs. Results show that, compared with the other two, dynamic beamforming increases up to 15dB and homogenizes signal-to-noise ratio (SNR) along images of roughly 1 cm2. The method and system presented here could be the baseline for more advanced array-based systems that leverage the low-cost laser sources for clinical applications.
机译:我们探索在光学分辨率的光声显微镜中用于大面积扫描的波束形成方法的使用。已在一个实验装置中对其进行了评估,该实验装置包括一个低成本激光二极管和一个带有128个元素的线性探针的相控阵。讨论了三种不同的波束成形策略:无波束成形,静态波束成形和动态波束成形。该方法已在基于明胶的体模以及离体器官中进行了测试。结果表明,与其他两个相比,动态波束成形可增加高达15dB的频率,并沿大约1 cm2的图像均匀化信噪比(SNR)。此处介绍的方法和系统可以作为利用低成本激光源进行临床应用的基于阵列的更高级系统的基准。

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