混合低场MRI-CT肺部成像系统顶层设计

Venkata R. Yelleswarapu, Fenglin Liu, W. Cong, Ge Wang
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引用次数: 1

摘要

我们之前讨论过“全方位断层扫描”,但MRI和CT内x射线管的磁场之间的内在冲突是固有的。我们建议,通过在CT源位置使用具有可忽略不计的条纹场的低场MRI,可以创建具有最小干扰的CT-MRI系统。低场MRI对肺部成像特别有用,超极化气体可以增强信号。三种主要的设计被考虑和模拟,修改线圈设计和轴允许进一步的变化。第一种使用哈尔巴赫阵列来最小化外部磁场,第二种使用带有主动屏蔽的螺线管对,第三种使用旋转紧凑的MRI-CT。每个系统都是低场,这可以实现一个标准的旋转CT。通过匹配的时间和空间图像获取,可以同时获取真正的混合图像的结构和功能信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TOP-level designs of a hybrid low field MRI-CT system for pulmonary imaging
We previously discussed “omni-tomography”, but intrinsic conflicts between the magnetic fields of the MRI and the x-ray tube within the CT are inherent. We propose that by using low-field MRI with a negligible fringe field at the site of the CT source, it is possible to create a CT-MRI system with minimal interference. Low field MRI is particularly useful for lung imaging, where hyperpolarized gas can enhance the signal. Three major designs were considered and simulated, with modifications in coil design and axis allowing for further variation. The first uses Halbach arrays to minimize magnetic fields outside, the second uses solenoids pairs with active shielding, and the third uses a rotating compact MRI-CT. Each system is low field, which may allow the implementation of a standard rotating CT. Both structural and functional information can be acquired simultaneously for a true hybrid image with matching temporal and spatial image acquisition.
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