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Design and initial results of an RF-penetrable TOF PET insert dedicated for brain PET/MRI

机译:用于脑部PET / MRI的可穿透RF的TOF PET插入物的设计和初步结果

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Combined PET/MRI allows physicians to acquire multiparametric (anatomical, functional and molecular) information about a patient's diseases in one imaging session. A PET insert dedicated to brain PET/MRI offers several advantages compared to the commercial integrated whole-body PET/MRI systems, including 2-3 times higher sensitivity, better spatial resolution, and significantly lower price. We are developing an RF-penetrable TOF PET insert dedicated for brain PET/MRI. The trans-axial field-of-view (FoV) of the scanner is 28 cm, and the axial FoV is 16 cm. The PET ring consists of 16 detector modules. Within each detector module, 6 sub-modules are arranged in the axial direction of the scanner. Each sub-module consists of an array of 8 x 16 LYSO crystals, each 3.2 mm x 3.2 mm x 20 mm, coupled one-to-one to an array of 8 x 16 SiPMs. Four PETA6 ASICs are placed on the sub-module to read out the signals from the SiPMs. Energy resolution at 511 keV and coincidence timing resolution (CRT) achieved in preliminary coincidence measurements acquired with two 4 x 4 LYSO crystal arrays are 12.3 ± 0.3% and 285 ± 14.0 ps FWHM, respectively. The sub-modules, with minimized trace length between the SiPMs and the PETA6 ASICs and active liquid cooling, are currently under production aiming for a system CRT goal of 250 ps FWHM. The 250 ps FWHM CRT goal will provide an image SNR gain of 2 from TOF, which will help to further enhance visualization and quantification of brain images. In this presentation, we will present the design and initial results of this new RF-penetrable TOF PET insert.
机译:结合的PET / MRI使医生可以在一个成像会话中获取有关患者疾病的多参数(解剖,功能和分子)信息。与商用一体式全身PET / MRI系统相比,专用于脑部PET / MRI的PET插入物具有多个优势,包括灵敏度提高2-3倍,空间分辨率更好,并且价格大大降低。我们正在开发专用于脑部PET / MRI的可穿透RF的TOF PET插件。扫描仪的跨轴视场(FoV)为28厘米,轴向视场为16厘米。 PET环包括16个检测器模块。在每个检测器模块内,在扫描仪的轴向上排列有6个子模块。每个子模块均由8 x 16 LYSO晶体阵列组成,每个晶体分别为3.2 mm x 3.2 mm x 20 mm,并与8 x 16 SiPM阵列一对一耦合。四个PETA6 ASIC放置在子模块上,以读取来自SiPM的信号。用两个4 x 4 LYSO晶体阵列获得的初步重合测量中获得的511 keV能量分辨率和重合时序分辨率(CRT)分别为FWHM 12.3±0.3%和285±14.0 ps FWHM。目前正在生产的子模块具有最小的SiPM和PETA6 ASIC之间的走线长度以及主动的液体冷却功能,其目标是系统CRT目标为250 ps FWHM。 250 ps FWHM CRT目标将提供TOF的2图像SNR增益,这将有助于进一步增强脑图像的可视化和量化。在本演示中,我们将介绍这种新型的可穿透RF的TOF PET插件的设计和初步结果。

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