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首页> 外文期刊>Journal of Medical Imaging and Health Informatics >Multiline Acquisition Beamforming for Ultrasound Computed Tomography
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Multiline Acquisition Beamforming for Ultrasound Computed Tomography

机译:超声计算断层扫描的多线采集波束成形

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In recent years, ultrasound computed tomography (USCT) systems have been developed for early detection of breast cancer. In this paper, a multiline acquisition (MLA) beamforming method for USCT is proposed, and the steering angle of the receiving multiline for ring array is discussed. The principle of MLA beamforming is to produce several receiving lines from one transmitted event. It can provide images with less noise and artifacts, higher resolution and better contrast compared to the traditional B-mode imaging method. The validation of the MLA is described through the breast phantom experiment and in vivo experiments. The radio-frequency (RF) data were captured by the USCT system developed in the Medical Ultrasound Laboratory. The main components of the USCT system consist of a ring-type transducer, a multiplexer, a channel data acquisition system and a workstation. The ring-type transducer with 1024 elements has an inner diameter of 200 mm. The center frequency of the transducer is 2.5 MHz. Experimental results show that the reconstructed images by MLA method get the higher signal to noise ratio (SNR) and more homogeneous background compared to the delay and sum (DAS) method. For the breast phantom, MLA gives the better contrast properties for the hyperechoic cyst. Artifacts are removed more efficiently while the clutters are suppressed simultaneously. For in vivo experiments, the CR of the upper arm image increases from 3.18 dB to 24.23 dB, and the CR of the lower leg image increases from 19.19 dB to 45.17 dB in the regions of interest (ROI). The skeletal muscle, the bone of the upper arm and the lower leg can be distinguished more clearly. In the breast experiment, all the evaluation indices including CR, CNR, and SNR are improved at ROIs, and more details of the breast tissue can be shown.
机译:近年来,已经开发出超声计算断层扫描(USCT)系统用于早期检测乳腺癌。在本文中,提出了一种用于USCT的多线获取(MLA)波束形成方法,并且讨论了接收多线的环形阵列的转向角。 MLA波束形成的原理是从一个传输的事件产生几条接收线。与传统的B模式成像方法相比,它可以提供具有较少噪声和伪影,更高分辨率和更好的对比度的图像。通过乳房幻影实验和体内实验描述了MLA的验证。通过在医学超声实验室中开发的USCT系统捕获射频(RF)数据。 USCT系统的主要组件由环型传感器,多路复用器,信道数据采集系统和工作站组成。具有1024元件的环形换能器的内径为200mm。换能器的中心频率为2.5 MHz。实验结果表明,与延迟和总和(DAS)方法相比,MLA方法的重建图像得到了更高的信噪比(SNR)和更均匀的背景。对于乳房幻影,MLA为高思科囊肿提供更好的对比度。在同时抑制折叠时更有效地移除伪影。对于体内实验,上臂图像的Cr从3.18 dB增加到24.23db,下腿图像的Cr从感兴趣的区域(ROI)中的19.19 dB增加到45.17dB增加到45.17dB。骨骼肌,上臂的骨骼和小腿可以更清楚地分辨。在乳房实验中,在ROI的RIS中改善了包括CR,CNR和SNR的所有评估指标,并且可以显示乳房组织的更多细节。

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