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An Improved Chirp Coded Excitation Based on Compression Pulse Weighting Method in Endoscopic Ultrasound Imaging

机译:基于压缩脉冲加权法的内窥镜超声成像的改进啁啾编码激励

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摘要

Chirp coded excitation is an effective method to improve the signal-to-noise ratio (SNR) and penetration depth of high-frequency endoscopic ultrasound (EUS) imaging. In coded excitation, pulse compression is applied to compress the elongated coded signals into a short pulse, which determines the final imaging performance, including spatial resolution and SNR. However, with the current pulse compression methods, it is hard to get high performance in the peak sidelobe level (PSL), image contrast, and axial resolution at the same time. To solve this problem, in this article, a new method named compressed pulse weighting method (CPWM) was proposed based on the combination of two kinds of pulse compression signals. A brief theoretical derivation proved the feasibility of method. The proposed method was evaluated by the simulation and phantom experiments. Compared with traditional method, the results showed that the proposed adaptive weighting method can provide increases of 32.42% in the penetration depth, 9.48 dB in the SNR, 5.60 dB in the contrast ratio (CR), 5.46 in the contrast-to-noise ratio (CNR), and 0.13 mm in the axial imaging resolution for 12-MHz EUS. Therefore, this method can effectively improve the ultrasound penetration depth and imaging quality, which made it have good potential for high-frequency ultrasound imaging.
机译:Chirp编码激励是提高高频内窥镜超声(EUS)成像的信噪比(SNR)和穿透深度的有效方法。在编码激励中,施加脉冲压缩以将细长编码信号压缩成短脉冲,这决定了最终的成像性能,包括空间分辨率和SNR。然而,利用当前脉冲压缩方法,同时难以在峰值侧瓣级(PSL),图像对比度和轴向分辨率中获得高性能。为了解决这个问题,在本文中,基于两种脉冲压缩信号的组合提出了一种名为压缩脉冲加权方法(CPWM)的新方法。简要的理论衍生证明了方法的可行性。通过模拟和幻像实验评估所提出的方法。与传统方法相比,结果表明,所提出的自适应加权方法可以在渗透深度下提供32.42%的增加,SNR中为9.48 dB,比对比度(Cr),5.46处于对比度的比较率为5.46 (CNR),以及12-MHz EU的轴向成像分辨率的0.13mm。因此,该方法可以有效地提高超声渗透深度和成像质量,这使得它具有良好的高频超声成像潜力。

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