论文标题
3-D连贯的多透明超声成像具有稀疏的螺旋阵列
3-D Coherent Multi-Transducer Ultrasound Imaging with Sparse Spiral Arrays
论文作者
论文摘要
连贯的多透射超声(COMTUS)通过多个阵列的连贯组合创造了扩展有效的光圈,从而导致具有增强分辨率,扩展视野视野和更高灵敏度的图像。通过使用从目标点反向散射的回声来实现数据所需的多个传感器的亚波长度定位精度。在这项研究中,使用一对256元素的2-D稀疏螺旋阵列在3-D成像中首次实施和证明COMTUS,这使频道计数保持较低并限制要处理的数据量。使用模拟和幻影测试研究了该方法的成像性能。自由手术的可行性还可以实验证明。结果表明,与使用相同的活动元素总数的单个密集阵列系统相比,提出的COMTUS系统可以在两个阵列对齐的方向上提高空间分辨率(最多10次),对比度对比度(CNR)(CNR,最高30%),最高为CNR(最高11%)。总体而言,COMTUS显示出更窄的主叶和更高的对比度对比,这导致动态范围增加并更好地可检测性。
Coherent multi-transducer ultrasound (CoMTUS) creates an extended effective aperture through the coherent combination of multiple arrays, which results in images with enhanced resolution, extended field-of-view, and higher sensitivity. The subwavelength localization accuracy of the multiple transducers required to coherently beamform the data is achieved by using the echoes backscattered from targeted points. In this study, CoMTUS is implemented and demonstrated for the first time in 3-D imaging using a pair of 256-element 2-D sparse spiral arrays, which keep the channel-count low and limit the amount of data to be processed. The imaging performance of the method was investigated using both simulations and phantom tests. The feasibility of free-hand operation is also experimentally demonstrated. Results show that, in comparison to a single dense array system using the same total number of active elements, the proposed CoMTUS system improves spatial resolution (up to 10 times) in the direction where both arrays are aligned, contrast-to-noise-ratio (CNR, up to 30%), and generalized CNR (up to 11%). Overall, CoMTUS shows narrower main lobe and higher contrast-to-noise-ratio, which results in an increased dynamic range and better target detectability.