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Sparsity-based beamforming to enhance two-dimensional linear-array photoacoustic tomography

机译:基于稀疏性的波束形成,以增强二维线性阵列光声断层扫描

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摘要

In linear-array photoacoustic imaging (PAI), beamforming methods can be used to reconstruct the images. Delay-and-sum (DAS) beamformer is extensively used due to its simple implementation. However, this algorithm results in high level of sidelobes and low resolution. In this paper, it is proposed to form the photoacoustic (PA) images through a regularized inverse problem to address these limitations and improve the image quality. We define a forward/backward problem of the beamforming and solve the inverse problem using a sparse constraint added to the model which forces the sparsity of the output beamformed data. It is shown that the proposed Sparse beamforming (SB) method is robust against noise due to the sparsity nature of the problem. Numerical results show that the SB method improves the signal-to-noise ratio (SNR) for about 98.69 dB, 82.26 dB and 74.73 dB, in average, compared to DAS, delay-multiply-and-sum (DMAS) and double stage-DMAS (DS-DMAS), respectively. Also, quantitative evaluation of the experimental results shows a significant noise reduction using SB algorithm. In particular, the contrast ratio of the wire phantom at the depth of 30 mm is improved about 103.97 dB, 82.16 dB and 65.77 dB compared to DAS, DMAS and DS-DMAS algorithms, respectively, indicating a better performance of the proposed SB in terms of noise reduction.
机译:在线性阵列光声成像(PAI)中,波束成形方法可用于重建图像。由于其简单实现,广泛使用延迟和总和(DAS)波束形成器。但是,该算法导致高水平的侧链和低分辨率。在本文中,建议通过正则化逆问题形成光声(PA)图像,以解决这些限制并提高图像质量。我们定义波束成形的前向/后向问题,并使用添加到模型的稀疏约束来解决逆问题,该模型迫使输出波束成形数据的稀疏性。结果表明,由于问题的稀疏性质,所提出的稀疏波束形成(SB)方法对抗噪声稳健。数值结果表明,与DAS,延迟乘法和总和(DMA)和双阶段相比,Sb方法平均提高了约98.69dB,82.26dB和74.73dB的信噪比(SNR)。分别为DMA(DS-DMA)。而且,实验结果的定量评估显示了使用SB算法的显着降噪。特别地,与DAS,DMA和DS-DMA算法相比,线幻影在30mm深度为30mm处的电线幻像的对比度分别提高了约103.97dB,82.16dB和65.77dB,表明所提出的SB的性能更好降噪。

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