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利用改进的相干因子增强线阵光声束形成

Enhanced linear-array photoacoustic beamforming using modified coherence factor.

机构信息

Research Center for Biomedical Technologies and Robotics, Institute for Advanced Medical Technologie, Iran.

Tarbiat Modares University, Department of Biomedical Engineering, Tehran, Iran.

出版信息

J Biomed Opt. 2018 Feb;23(2):1-10. doi: 10.1117/1.JBO.23.2.026005.

Abstract

Photoacoustic imaging (PAI) is a promising medical imaging modality providing the spatial resolution of ultrasound imaging and the contrast of optical imaging. For linear-array PAI, a beamformer can be used as the reconstruction algorithm. Delay-and-sum (DAS) is the most prevalent beamforming algorithm in PAI. However, using DAS beamformer leads to low-resolution images as well as high sidelobes due to nondesired contribution of off-axis signals. Coherence factor (CF) is a weighting method in which each pixel of the reconstructed image is weighted, based on the spatial spectrum of the aperture, to mainly improve the contrast. We demonstrate that the numerator of the formula of CF contains a DAS algebra and propose the use of a delay-multiply-and-sum beamformer instead of the available DAS on the numerator. The proposed weighting technique, modified CF (MCF), has been evaluated numerically and experimentally compared to CF. It was shown that MCF leads to lower sidelobes and better detectable targets. The quantitative results of the experiment (using wire targets) show that MCF leads to for about 45% and 40% improvement, in comparison with CF, in the terms of signal-to-noise ratio and full-width-half-maximum, respectively.

摘要

光声成像是一种很有前途的医学成像方式,它提供了超声成像的空间分辨率和光学成像的对比度。对于线阵 PAI,可以使用波束形成器作为重建算法。延迟求和(DAS)是 PAI 中最流行的波束形成算法。然而,由于非轴向信号的不期望贡献,使用 DAS 波束形成器会导致低分辨率图像和高旁瓣。相干因子(CF)是一种加权方法,根据孔径的空间频谱,对重建图像的每个像素进行加权,主要是为了提高对比度。我们证明了 CF 公式的分子包含 DAS 代数,并提出在分子中使用延迟乘法求和波束形成器代替现有的 DAS。已经对所提出的加权技术,即改进的 CF(MCF)进行了数值评估,并与 CF 进行了实验比较。结果表明,MCF 导致更低的旁瓣和更好的可检测目标。实验(使用线靶)的定量结果表明,与 CF 相比,MCF 在信噪比和半最大值全宽方面分别提高了约 45%和 40%。

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