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Design of a Multi-Pinhole Collimator for I-123 DaTscan Imaging on Dual-Headed SPECT Systems in Combination with a Fan-Beam Collimator

机译:双头SPECT系统上I-123 DaTscan成像的多针孔准直仪与扇形光束准直仪的组合设计

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摘要

For the 2011 FDA approved Parkinson’s Disease (PD) SPECT imaging agent I-123 labeled DaTscan, the volume of interest (VOI) is the interior portion of the brain. However imaging of the occipital lobe is also required with PD for calculation of the striatal binding ratio (SBR), a parameter of significance in early diagnosis, differentiation of PD from other disorders with similar clinical presentations, and monitoring progression. Thus we propose the usage of a combination of a multi-pinhole (MPH) collimator on one head of the SPECT system and a fan-beam on the other. The MPH would be designed to provide high resolution and sensitivity for imaging of the interior portion of the brain. The fan-beam collimator would provide lower resolution but complete sampling of the brain addressing data sufficiency and allowing a volume-of-interest to be defined over the occipital lobe for calculation of SBR’s. Herein we focus on the design of the MPH component of the combined system. Combined reconstruction will be addressed in a subsequent publication. An analysis of 46 clinical DaTscan studies was performed to provide information to define the VOI, and design of a MPH collimator to image this VOI. The system spatial resolution for the MPH was set to 4.7 mm, which is comparable to that of clinical PET systems, and significantly smaller than that of fan-beam collimators employed in SPECT. With this set, we compared system sensitivities for three aperture array designs, and selected the 3 × 3 array due to it being the highest of the three. The combined sensitivity of the apertures for it was similar to that of an ultra-high resolution fan-beam (LEUHRF) collimator, but smaller than that of a high-resolution fan-beam collimator (LEHRF). On the basis of these results we propose the further exploration of this design through simulations, and the development of combined MPH and fan-beam reconstruction.
机译:对于2011年FDA批准的标有DaTscan的帕金森氏病(PD)SPECT成像剂I-123,感兴趣的体积(VOI)是大脑的内部。然而,PD还需要对枕叶进行成像,以计算纹状体结合率(SBR),该参数在早期诊断中具有重要意义,可将PD与其他具有类似临床表现的疾病区分开来,并监测进展。因此,我们建议结合使用SPECT系统的一个头上的多针孔(MPH)准直仪和另一头上的扇形光束。 MPH将被设计为为大脑内部成像提供高分辨率和灵敏度。扇形光束准直器将提供较低的分辨率,但可以对大脑进行完整采样以解决数据的充足性,并可以在枕叶上定义感兴趣的体积以计算SBR。在这里,我们集中于组合系统的MPH组件的设计。联合重建将在后续出版物中讨论。进行了46项临床DaTscan研究的分析,以提供信息以定义VOI,并设计了MPH准直仪以对该VOI成像。 MPH的系统空间分辨率设置为4.7 mm,与临床PET系统相当,并且远小于SPECT中使用的扇形光束准直器。在此设置下,我们比较了三种孔径阵列设计的系统灵敏度,并选择了3×3阵列,因为它是三个阵列中的最高阵列。孔径的组合灵敏度与超高分辨率扇形光束准直器(LEUHRF)相似,但小于高分辨率扇形光束准直器(LEHRF)。在这些结果的基础上,我们建议通过仿真对这种设计进行进一步探索,并开发MPH和扇形束组合重建技术。

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