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Combining Millimeter-Wave Imaging, Ultrasound and Elastography in a New Multimodal Approach for Breast Cancer Detection: Initial Experimental Results*

机译:结合毫米波成像,超声和弹性成像技术的新型多模式乳腺癌检测方法:初步实验结果*

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In this paper, for the first time, a triple-mode scan using electromagnetic waves, in the shape of millimeter waves, and ultrasound waves, to obtain B-mode and quasistatic elastography images of a phantom of human breast tissues is shown. A homogeneous phantom composed of nontoxic, low-cost and easy-to-handle materials (i.e. water, oil, gelatin and dishwashing liquid) was produced, with an inclusion made of water and agar. These are intended to mimic, in terms of dielectric properties, healthy adipose tissues and neoplastic tissues, respectively. A millimeter-wave imaging prototype was used to scan the phantom, by implementing a linear synthetic array of 24 antennas with a central working frequency of 30 GHz. The phantom was then scanned using an ultrasound research system and a linear-array probe at 7 MHz, acquiring both B-mode and quasi-static elastography images. The millimeter-wave system showed an excellent ability to detect the target placed at about 1.4 cm depth. Also in the ultrasound case the inclusion was correctly detected as a hypoechoic, stiff mass. This first experimental findings show that millimeter-wave, ultrasound and elasticity imaging can be used jointly to detect tumor-like targets into phantoms mimicking healthy breast tissues. Thus, they provide promising preliminary results to further study the application of this multimodal approach in all those critical cases in which such complementary imaging techniques could be exploited for an enhanced tumor detection, based on tissues dielectric, acoustic and elastic properties.
机译:在本文中,首次显示了使用毫米波形状的电磁波和超声波进行三模式扫描,以获得人体乳腺组织体模的B模式和准静态弹性成像图像。制作出由无毒,低成本且易于处理的材料(即水,油,明胶和洗碗液)组成的均质体模,其中包含水和琼脂。这些旨在模仿介电特性,分别是健康的脂肪组织和赘生性组织。通过实现24个天线的线性合成阵列(中心工作频率为30 GHz),使用毫米波成像原型扫描体模。然后使用超声研究系统和线性阵列探针在7 MHz上扫描体模,以获取B模式和准静态弹性成像图像。毫米波系统显示出出色的检测位于约1.4厘米深度的目标的能力。同样在超声情况下,夹杂物被正确地检测为低回声的硬块。最初的实验结果表明,毫米波,超声和弹性成像可共同用于将类似于肿瘤的目标检测到模仿健康乳房组织的幻象中。因此,他们提供了有希望的初步结果,以进一步研究这种多峰方法在所有关键情况下的应用,其中基于组织的介电,声学和弹性特性,可以利用此类互补成像技术来增强肿瘤的检测。

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