首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >An MRI-compatible PET insert for whole body studies in rodents at high functional and anatomical resolution
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An MRI-compatible PET insert for whole body studies in rodents at high functional and anatomical resolution

机译:MRI兼容的PET插入物,可在啮齿动物中以高功能和解剖分辨率进行全身研究

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The feasibility of performing high-resolution PET and high-field MRI simultaneously in rodents has been previously demonstrated in small-scale systems capable of imaging the rat brain and mouse. We are nearing completion of a larger scale PET system which will accommodate the whole rat and perform at 9.4 T with <2 mm PET resolution. The PET insert has inner/outer diameters of 13.5/20.6 cm, compact enough to fit within the gradient set of a Varian large-bore 9.4T MRI system while accommodating on the inside a commercial Insight birdcage coil for the rat. The resulting volume capable of simultaneous PET/MRI imaging is 7 cm in diameter and 5 cm axially. The 96 PET detectors are arranged in 4 rings of modular detector blocks, each with an array of 2 × 2 × 14 mm LYSO crystal coupled to a Hamamatsu APD array and read out by the RatCAP ASIC. Data acquisition is divided into 4 sectors, each handled by a local FPGA which communicates via Ethernet to the host PC. Offline data processing software is being developed to bin coincidences and determine physical corrections. Image reconstruction follows a listmode OSEM approach. The design of all hardware components is complete and prototypes of each have been fabricated. System integration is underway and initial performance of the system will be presented.
机译:先前已经在能够对大鼠脑和小鼠成像的小型系统中证明了在啮齿动物中同时执行高分辨率PET和高场MRI的可行性。我们即将完成更大规模的PET系统,该系统可容纳整个大鼠,并在9.4 T的条件下以小于2 mm的PET分辨率运行。 PET插入物的内径/外径为13.5 / 20.6厘米,结构紧凑,可放入Varian大口径9.4T MRI系统的梯度装置中,同时可容纳在用于大鼠的商业Insight鸟笼线圈内部。能够同时进行PET / MRI成像的最终体积为直径7厘米,轴向5厘米。 96个PET检测器排列在4个模块化检测器环中,每个检测器环具有2×2×14 mm LYSO晶体阵列,并与Hamamatsu APD阵列相连,并由RatCAP ASIC读出。数据采集​​分为4个扇区,每个扇区由本地FPGA处理,该本地FPGA通过以太网与主机PC通信。正在开发脱机数据处理软件以合并巧合并确定物理更正。图像重建遵循列表模式OSEM方法。所有硬件组件的设计已经完成,并且每个组件的原型都已制作完成。系统集成正在进行中,将介绍系统的初始性能。

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