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Improved contrast in laser-diode-based photoacoustic images with short-lag spatial coherence beamforming

机译:具有短时空相干波束形成的基于激光二极管的光声图像中改善的对比度

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Pulsed laser diodes (PLDs) enable photoacoustic imaging with lower cost, increased portability, and higher frame rates compared to conventional Q-switched Nd:YAG lasers. However, the main disadvantage of the PLD is its low peak power, which necessitates averaging thousands of photoacoustic signals to achieve signal-to-noise ratios that are comparable to those produced by an Nd:YAG laser. The averaging process degrades temporal resolution with minimal improvements to image contrast. This work is the first to investigate the use of a PLD and short-lag spatial coherence (SLSC) beamforming to display high-contrast photoacoustic images with minimal to no signal averaging required. The mean contrast in single photoacoustic images of targets as deep as 5–15 mm from the surface was improved by 11–17 dB with SLSC beamforming when compared to conventional delay-and-sum (DAS) beamforming of the same data. The SLSC correlation kernel was adjusted based on laser pulse lengths to demonstrate applicability to coded excitation. Results suggest that coherence-based beamforming can overcome current limitations with real-time PLD-based photoacoustic imaging.
机译:与传统的Q开关Nd:YAG激光器相比,脉冲激光二极管(PLD)能够以更低的成本,更高的便携性和更高的帧速率实现光声成像。但是,PLD的主要缺点是其峰值功率低,这需要对数千个光声信号进行平均才能获得与Nd:YAG激光器产生的信噪比相当的信噪比。平均过程降低了时间分辨率,而对图像对比度的改善却很小。这项工作是第一个研究使用PLD和短时空相干(SLSC)波束成形来显示高对比度光声图像,而无需进行信号平均的最小化。与相同数据的常规时延和(DAS)波束成形相比,SLSC波束成形可使距表面深达5–15 mm的目标的单光声图像的平均对比度提高11–17 dB。基于激光脉冲长度调整了SLSC相关核,以证明适用于编码激励。结果表明,基于相干的波束成形可以克服基于实时PLD的光声成像的当前局限性。

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