首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Two eyes see more than one: Double echo stereoscopic MRA for rapid 3D visualization of vascular structures
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Two eyes see more than one: Double echo stereoscopic MRA for rapid 3D visualization of vascular structures

机译:两只眼睛不只一只:双回波立体MRA用于快速3D可视化血管结构

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Object A three-dimensional (3D) visualization of the target region during intravascular interventions in real-time is challenging since the acquisition of a time-consuming 3D dataset is required. In this work, a novel stereoscopic double echo sequence for achieving 3D depth perception by sampling only two oblique projection images is presented. Materials and methods A double echo (DE) FLASH pulse sequence was developed to acquire continuously stereoscopic image pairs of the vascular target anatomy. Stereo image data were displayed on a stereoscopic 3D LCD monitor in real time after image reconstruction. Phantom experiments followed by a depth perception test were performed to assess the usability of the stereo image pairs for 3D visualization. In an animal experiment the sequence was tested in vivo and was compared with a slower interleaved (IL) sequence variant. Results In the phantom experiments an SNR difference of 6 % between left and right image was found which did not influence the depth perception. The DE acquisition was superior to the IL sequence (SNR_(DE) = 10.3, 2.3 images/s over SNR_(IL) = 7.1, 1.7 images/s), and during contrast enhancement the abdominal arterial vasculature was clearly perceived as a 3D structure. Conclusion A novel stereoscopic DE pulse sequence can be utilized for the fast 3D stereoscopic visualization of vascular structures in real-time.
机译:对象由于需要获取耗时的3D数据集,因此在血管内干预期间实时地对目标区域进行三维(3D)可视化具有挑战性。在这项工作中,提出了一种新颖的立体双回波序列,该序列可通过仅采样两个倾斜投影图像来实现3D深度感知。材料和方法开发了双回波(DE)FLASH脉冲序列,以获取血管靶解剖结构的连续立体图像对。重建图像后,将立体图像数据实时显示在3D立体LCD监视器上。进行了幻影实验,随后进行了深度感知测试,以评估立体图像对用于3D可视化的可用性。在动物实验中,对该序列进行了体内测试,并与较慢的交错(IL)序列变体进行了比较。结果在体模实验中,发现左右图像之间的SNR差异为6%,这不会影响深度感知。 DE采集优于IL序列(SNR_(DE)= 10.3,2.3图像/秒,优于SNR_(IL)= 7.1,1.7图像/秒),并且在增强对比度期间,腹主动脉血管明显被视为3D结构。结论新型的立体DE脉冲序列可用于实时快速3D立体显示血管结构。

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