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2D array design based on Fermat spiral for ultrasound imaging

机译:基于Fermat螺旋的二维阵列超声成像设计

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摘要

The main challenge faced by 3D ultrasonic imaging with 2D array transducers is the large number of elements required to achieve an acceptable level of quality in the images. Therefore, the optimisation of the array layout, in order to reduce the number of active elements in the aperture, has been a research topic in the last years. Nowadays, array technology has made viable the production of 2D arrays with larger flexibility on elements size, shape and position, allowing to study other configurations different to the classical matrix organisation, such as circular, archimedes spiral or polygonal layout between others. In this work, the problem of designing an imaging system array with large apertures and a very limited number of active elements (Ne = 128 and N_e = 256) using the Fermat spiral layout has been studied. As summary, a general discussion about the most interesting cases is presented.
机译:使用2D阵列换能器进行3D超声成像所面临的主要挑战是,要获得可接受的图像质量水平,需要大量的元素。因此,为了减少开口中的有源元件的数量,优化阵列布局是近年来的研究课题。如今,阵列技术使二维阵列的生产在元素尺寸,形状和位置上具有更大的灵活性成为可能,从而允许研究不同于经典矩阵组织的其他配置,例如圆形,阿基米德螺旋形或多边形布置。在这项工作中,研究了使用费马螺旋布局设计具有大孔径和非常有限数量的有源元件(Ne = 128和N_e = 256)的成像系统阵列的问题。作为总结,提出了有关最有趣案例的一般性讨论。

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