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首页> 外文期刊>Technology in cancer research & treatment. >Development of a Computerized 4-D MRI Phantom for Liver Motion Study
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Development of a Computerized 4-D MRI Phantom for Liver Motion Study

机译:肝动作研究的计算机化4-D MRI幻影的研制

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摘要

To develop a 4-dimensional computerized magnetic resonance imaging phantom with image textures extracted from real patient scans for liver motion studies. The proposed phantom was developed based on the current version of 4-dimensional extended cardiac-torso computerized phantom and a clinical magnetic resonance scan. Initially, the extended cardiac-torso phantom was voxelized in abdominal-chest region at the end of exhalation phase. Structures/tissues were classified into 4 categories: (1) Seven key textured organs, including liver, gallbladder, spleen, stomach, heart, kidneys, and pancreas, were mapped from a clinical T1-weighted liver magnetic resonance scan using deformable registration. (2) Large textured soft tissue volumes were simulated via an iterative pattern generation method using the same magnetic resonance scan. (3) Lung and intestine structures were generated by assigning uniform intensity with proper noise modeling. (4) Bony structures were generated by assigning the magnetic resonance values. A spherical hypointensity tumor was inserted into the liver. Other respiratory phases of the 4-dimensional phantom were generated using the backward deformation vector fields exported by the extended cardiac-torso program, except that bony structures were generated separately for each phase. A weighted image filtering process was utilized to improve the overall tissue smoothness at each phase. Three 4-dimensional series with different motion amplitudes were generated. The developed motion phantom produced good illustrations of abdominal-chest region with anatomical structures in key organs and texture patterns in large soft tissue volumes. In a standard series, the tumor volume was measured as 13.90 ± 0.11 cm(3) in a respiratory cycle and the tumor's maximum center-of-mass shift was 2.95 cm/1.84 cm on superior-inferior/anterior-posterior directions. The organ motion during the respiratory cycle was well rendered. The developed motion phantom has the flexibility of motion pattern variation, organ geometry variation, and tumor modeling variation. A 4-D computerized phantom was developed and could be used to produce image series with synthetic magnetic resonance textures for magnetic resonance imaging research of liver motion.
机译:开发具有从真实患者扫描中提取的图像纹理的4维计算机化磁共振成像模型,用于肝脏运动研究。基于当前版本的4维扩展心脏躯干计算机化模型和临床磁共振扫描来开发所提出的幻像。最初,扩展的心脏躯干幻影在呼气阶段结束时在腹部胸部区域体粘合。结构/组织被分类为4类:(1)七个关键纹理器官,包括肝脏,胆囊,脾,胃,心脏,肾脏和胰腺,使用可变形配准从临床T1加权肝磁共振扫描中映射。 (2)通过使用相同的磁共振扫描的迭代模式生成方法模拟大型纹理软组织体积。 (3)通过使用适当的噪声建模分配均匀强度产生肺和肠结构。 (4)通过分配磁共振值产生骨结构。将球形低度肿瘤插入肝脏中。使用由扩展的心脏躯干程序出口导出的后向变形矢量字段产生的4维模镜的其他呼吸相,除了为每个阶段分开产生骨结构。利用加权图像过滤过程来改善每个阶段的整体组织平滑度。产生具有不同运动幅度的三个4维系列。发达的运动幻影产生了腹部胸部区域的良好插图,其中具有备受器官和大型软组织体积的纹理图案中的解剖结构。在标准系列中,在呼吸循环中测量肿瘤体积为13.90±0.11cm(3),并且肿瘤的最大体重变化在优越的/前后后侧方向上为2.95cm / 1.84厘米。呼吸周期内的器官运动很好。发达的运动幻像具有运动模式变化,器官几何变异和肿瘤建模变化的灵活性。开发了一个4-D电脑化幻像,可用于生产具有合成磁共振纹理的图像系列,用于肝运动的磁共振成像研究。

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