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用于高帧率超声和光声成像的基于信噪比相干的自适应成像

SNR-dependent coherence-based adaptive imaging for high-frame-rate ultrasonic and photoacoustic imaging.

作者信息

Wang Yu-Hsin, Li Pai-Chi

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2014 Aug;61(8):1419-32. doi: 10.1109/TUFFC.2014.3051.

Abstract

This paper introduces the SNR-dependent coherence factor (CF), which can be used for adaptive side lobe suppression in ultrasound (US) and photoacoustic (PA) imaging. Previous methods employed the minimum-variance distortionless response (MVDR)-based CF to achieve remarkable resolution improvement (by MVDR) and to suppress side lobes (by CF). However, the SNR is often low when using an unfocused acoustic beam (e.g., high-frame-rate imaging) and in PA imaging (limited laser energy), giving such an approach suboptimal performance in these applications because noise also lowers the coherence and thus affects the effectiveness of the side lobe suppression by these CF-based methods. To overcome this problem, the proposed method takes into account the local SNR in the CF formulation so that the contrast can be restored even when the SNR is low. We tested this method with both high-frame-rate US imaging and PA imaging. Simulations show that the proposed method performs well even when the SNR is as low as -10 dB. Compared with the conventional CF, the contrast (CR) and contrast-to-noise ratio (CNR) in clinical US imaging can be improved by an average of 27.2% in CR and 11.1% in CNR with the proposed method, whereas in PA imaging, the lateral resolution could be restored and the image contrast was elevated by 17 dB.

摘要

本文介绍了信噪比相关的相干因子(CF),其可用于超声(US)和光声(PA)成像中的自适应旁瓣抑制。以往的方法采用基于最小方差无失真响应(MVDR)的CF来实现显著的分辨率提升(通过MVDR)和旁瓣抑制(通过CF)。然而,在使用非聚焦声束时(例如高帧率成像)以及在PA成像中(激光能量有限),信噪比通常较低,这使得这种方法在这些应用中的性能欠佳,因为噪声也会降低相干性,从而影响这些基于CF的方法的旁瓣抑制效果。为克服这一问题,所提出的方法在CF公式中考虑了局部信噪比,以便即使在信噪比低时也能恢复对比度。我们用高帧率US成像和PA成像对该方法进行了测试。模拟结果表明,即使信噪比低至 -10 dB,所提出的方法仍表现良好。与传统CF相比,在所提出的方法下,临床US成像中的对比度(CR)和对比度噪声比(CNR)平均可分别提高27.2%(CR)和11.1%(CNR),而在PA成像中,横向分辨率可以恢复,图像对比度提高了17 dB。

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