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The Application of an Ultrasound Tomography Algorithm in a Novel Ring 3D Ultrasound Imaging System

机译:超声层析成像算法在新型环形3D超声成像系统中的应用

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摘要

Currently, breast cancer is one of the most common cancers in women all over the world. A novel 3D breast ultrasound imaging ring system using the linear array transducer is proposed to decrease costs, reduce processing difficulties, and improve patient comfort as compared to modern day breast screening systems. The 1 × 128 Piezoelectric Micromachined Ultrasonic Transducer (PMUT) linear array is placed 90 degrees cross-vertically. The transducer surrounds the mammary gland, which allows for non-contact detection. Once the experimental platform is built, the breast model is placed through the electric rotary table opening and into a water tank that is at a constant temperature of 32 °C. The electric rotary table performs a 360° scan either automatically or mechanically. Pulse echo signals are captured through a circular scanning method at discrete angles. Subsequently, an ultrasonic tomography algorithm is designed, and a horizontal slice imaging is realized. The experimental results indicate that the preliminary detection of mass is realized by using this ring system. Circular scanning imaging is obtained by using a rotatable linear array instead of a cylindrical array, which allows the size and location of the mass to be recognized. The resolution of breast imaging is improved through the adjustment of the angle interval (>0.05°) and multiple slices are gained through different transducer array elements (1 × 128). These results validate the feasibility of the system design as well as the algorithm, and encourage us to implement our concept with a clinical study in the future.
机译:当前,乳腺癌是全世界女性中最常见的癌症之一。与现代的乳房筛查系统相比,提出了一种使用线性阵列换能器的新型3D乳房超声成像环系统,以降低成本,减少处理难度并提高患者舒适度。 1×128压电微加工超声换能器(PMUT)线性阵列垂直交叉放置90度。传感器围绕乳腺,可以进行非接触式检测。建立实验平台后,将乳房模型通过电动旋转工作台开口放到恒温32°C的水箱中。电动转台可以自动或机械方式进行360°扫描。通过圆形扫描方法以离散角度捕获脉冲回波信号。随后,设计了一种超声层析成像算法,并实现了水平切片成像。实验结果表明,使用该环系统可以实现对质量的初步检测。圆形扫描成像是通过使用可旋转的线性阵列而不是圆柱形阵列获得的,从而可以识别质量的大小和位置。通过调整角度间隔(> 0.05°)可以提高乳房成像的分辨率,并通过不同的换能器阵列元件(1×128)获得多个切片。这些结果验证了系统设计和算法的可行性,并鼓励我们在未来的临床研究中实现我们的概念。

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