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Performance study of a radio-frequency field-penetrable PET insert for simultaneous PET/MRI

机译:射频场穿透性PET插入物同时进行PET / MRI的性能研究

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摘要

Hybrid positron emission tomography (PET)/magnetic resonance imaging (MRI) has risen to the cutting edge of medical imaging technology as it allows simultaneous acquisition of structural, functional and molecular information of the patient. A PET insert that can be installed into existing MR systems can in principle reduce the cost barriers for an existing MR site to achieve simultaneous PET/MRI compared to procuring an integrated PET+MRI system. The PET insert systems developed so far for PET/MRI require the RF transmitter coil to reside inside the PET ring as those PET inserts block the RF fields from the MRI system. Here we report for the first time on the performance of a full-ring brain-sized “RF-penetrable” PET insert we have recently completed. This insert allows the RF fields generated by the built-in body coil to penetrate the PET ring. The PET insert comprises a ring of 16 detector modules employing electro-optical coupled signal transmission and a multiplexing framework based on compressed sensing. Energy resolution, coincidence timing resolution (CTR), photopeak position, and coincidence count rate were acquired outside and inside a 3-Tesla MRI system under simultaneous acquisition to evaluate the impact of MRI on the PET performance. Coincidence count rate performance was evaluated by acquiring a cylinder source with high initial activity decaying over time. Tomographic imaging of two phantoms, a custom 6.5-cm diameter resolution phantom with hot rods of four different sizes (2.8 mm, 3.2 mm, 4.2 mm, and 5.2 mm diameter) and a 3D Hoffman brain phantom, were performed to evaluate the imaging capability of the PET insert. The energy resolution at 511 keV and CTR acquired by the PET insert were 16.2±0.1% and 5.3±0.1 ns FWHM, respectively, and remained stable during MRI operation except when the EPI sequence was applied. The PET system starts to show saturation in coincidence count rate at 2.76 million photon counts per second. Most of the 2.8-mm diameter hot rods and main features of the 3D Hoffman brain phantom were resolved by the PET insert, demonstrating its high spatial resolution and capability to image a complex tracer distribution mimicking that seen in the human brain.
机译:混合正电子发射断层扫描(PET)/磁共振成像(MRI)已发展到医学成像技术的最前沿,因为它允许同时获取患者的结构,功能和分子信息。与采购集成的PET + MRI系统相比,可以安装到现有MR系统中的PET插入件原则上可以减少现有MR站点实现同步PET / MRI的成本障碍。迄今为止,为PET / MRI开发的PET插入系统要求RF发射器线圈位于PET环内,因为这些PET插入会阻挡MRI系统的RF场。在这里,我们首次报告了我们最近完成的全尺寸大脑尺寸“可穿透RF” PET插入物的性能。该插入物允许内置线圈产生的RF场穿透PET环。 PET插入件包括一个16个检测器模块的环,这些检测器模块采用电光耦合信号传输和基于压缩传感的多路复用框架。通过同时采集3-Tesla MRI系统的内部和外部,获取能量分辨率,同时定时分辨率(CTR),光峰值位置和同时计数率,以评估MRI对PET性能的影响。通过获取具有较高初始活动随时间衰减的圆柱源来评估重合计数率性能。对两个体模进行层析成像,以直径为6.5厘米的定制体模,并使用四个不同尺寸(直径分别为2.8 mm,3.2 mm,4.2 mm和5.2 mm)的热棒和3D Hoffman脑体模来评估成像能力。 PET插入物的PET插入物在511 keV和CTR处获得的能量分辨率分别为FWHM的16.2±0.1%和5.3±0.1 ns FWHM,并且在MRI操作期间保持稳定,除非应用了EPI序列。 PET系统开始以每秒276万个光子计数的同时计数率显示饱和。 PET插件可解决大多数2.8毫米直径的热棒和3D Hoffman脑幻影的主要特征,这表明它具有很高的空间分辨率和成像类似于人类大脑所见的复杂示踪剂分布的能力。

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