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3-D high resolution images of ultrasonic transmission tomography compared to magnetic resonance and optical images

机译:与磁共振和光学图像相比,超声透射层析成像的3D高分辨率图像

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A high-resolution ultrasonic transmission tomography (HUTT) system has been newly developed with the critical innovations of using sub-millimeter transducer arrays and multi-band analysis of the first arrival pulse. The current HUTT system produces multi-band images from multi-band sinograms whose elements are obtained by discrete Fourier transform (DFT) of the first-arrival pulses at azimuthal, angular, and elevation positions of a scanning system. In this study, we present 3-D high-resolution HUTT images of a sheep kidney phantom along with their corresponding MRI and optical images in order to demonstrate the capacity of the current HUTT system for 3-D high-resolution transmission ultrasonic imaging. For enhanced visualization, 3-D multi-band HUTT image volumes are integrated into a single 3-D image volume using a novel image fusion method called local principal component analysis with a structure metric (LPCA-SM) and then co-registered to MRI and optical image volumes.
机译:高分辨率超声波传输层析成像(HUTT)系统是最新开发的,具有使用亚毫米级换能器阵列和首次到达脉冲的多波段分析的关键创新。当前的HUTT系统从多波段正弦图产生多波段图像,其元素是通过在扫描系统的方位角,角度和仰角位置处的第一到达脉冲的离散傅里叶变换(DFT)获得的。在这项研究中,我们展示了绵羊肾脏幻影的3D高分辨率HUTT图像及其相应的MRI和光学图像,以证明当前的HUTT系统进行3D高分辨率透射超声成像的能力。为了增强可视化效果,使用一种称为局部主成分分析和结构度量(LPCA-SM)的新颖图像融合方法,将3D多波段HUTT图像体积集成到单个3D图像体积中,然后共同注册到MRI和光学图像量。

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