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Numerical Study on Simultaneous Emission and Transmission Tomography in the MRI Framework

机译:MRI框架中同时发射和透射层析成像的数值研究

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Multi-modality imaging methods are instrumental for advanced diagnosis and therapy. Specifically, a hybrid system that combines computed tomography (CT), nuclear imaging, and magnetic resonance imaging (MRI) will be a Holy Grail of medical imaging, delivering complementary structural/morphological, functional, and molecular information for precision medicine. A novel imaging method was recently demonstrated that takes advantage of radiotracer polarization to combine MRI principles with nuclear imaging. This approach allows the concentration of a polarized γ-ray emitting radioisotope to be imaged with MRI resolution potentially outperforming the standard nuclear imaging mode at a sensitivity significantly higher than that of MRI. In our work, we propose to acquire MRI-modulated nuclear data for simultaneous image reconstruction of both emission and transmission parameters, suggesting the potential for simultaneous CT-SPECT-MRI. The synchronized diverse datasets allow excellent spatiotemporal registration and unique insight into physiological and pathological features. Here we describe the methodology involving the system design with emphasis on the formulation for tomographic images, even when significant radiotracer signals are limited to a region of interest (ROI). Initial numerical results demonstrate the feasibility of our approach for reconstructing concentration and attenuation images through a head phantom with various radio-labeled ROIs. Additional considerations regarding the radioisotope characteristics are also discussed.
机译:多模态成像方法有助于进行高级诊断和治疗。具体来说,将计算机断层扫描(CT),核成像和磁共振成像(MRI)相结合的混合系统将成为医学成像的圣杯,为精密医学提供互补的结构/形态,功能和分子信息。最近展示了一种新颖的成像方法,该方法利用放射性示踪剂极化将MRI原理与核成像相结合。这种方法可以使以MRI分辨率成像的发射偏振γ射线的放射性同位素浓度成像,其灵敏度可能明显优于MRI成像,其性能可能优于标准核成像模式。在我们的工作中,我们建议获取MRI调制的核数据,以便同时对发射和透射参数进行图像重建,这表明了同时进行CT-SPECT-MRI的潜力。同步的多样化数据集可实现出色的时空配准,并提供对生理和病理特征的独特见解。在这里,我们描述了涉及系统设计的方法,重点放在断层图像的配方上,即使重要的放射性示踪剂信号仅限于感兴趣的区域(ROI)。初步的数值结果证明了我们的方法可通过带有各种放射性标记的ROI的头部模型重建浓度和衰减图像的可行性。还讨论了有关放射性同位素特征的其他注意事项。

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