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采用短光纤束的硅光电倍增管 PET 用于同时进行 PET-MR 成像。

SiPM-PET with a short optical fiber bundle for simultaneous PET-MR imaging.

机构信息

Department of Radiological Science, Eulji University, Seongnam, Gyeonggi 461-713, Korea.

出版信息

Phys Med Biol. 2012 Jun 21;57(12):3869-83. doi: 10.1088/0031-9155/57/12/3869. Epub 2012 May 30.

Abstract

For positron emission tomography (PET) inserts to magnetic resonance imaging (MRI) applications, optical fibers have been used for some time to transfer scintillation photons to photomultiplier tubes positioned outside the fringe magnetic field. We previously proposed a novel utilization of an optical fiber for good radio frequency (RF) transmission from body coils to an imaging object. Optical fiber bundles between silicon photomultipliers (SiPM) and scintillation crystals provide an increased spacing between RF-shielded electronics boxes, facilitating RF passage from the body RF coils to imaging objects. In this paper, we present test results of a SiPM-PET system with a short optical fiber bundle for simultaneous PET-MR imaging. We built the SiPM-PET system which consisted of 12 SiPM-PET modules; each module was assembled with a lutetium yttrium oxyorthosilicatecrystal block, a 31 mm optical fiber bundle, a Hamamatsu multi-pixel photon counter S11064-050P and a signal processing box shielded with copper. The SiPM-PET system, with a face-to-face distance of 71 mm, was placed inside a 3 T MRI. A small surface coil placed inside the SiPM-PET system was used to receive the signal from phantoms while the body RF coil transmitted the RF pulses. The SiPM-PET system showed little performance degradation during the simultaneous PET-MR imaging and it caused no significant degradation of MR images with turbo spin echo (TSE), gradient echo or 3D spoiled gradient recalled sequences. Echo planar imaging MR images with and without the SiPM-PET inside the MR scanner were significantly worse than the images obtained with the TSE sequence.

摘要

对于正电子发射断层扫描(PET)插入磁共振成像(MRI)应用,一段时间以来一直使用光纤将闪烁光子传输到位于边缘磁场之外的光电倍增管。我们之前提出了一种新颖的光纤利用方式,可将射频(RF)从体线圈良好地传输到成像物体。硅光电倍增管(SiPM)和闪烁晶体之间的光纤束提供了更大的间隔,便于将屏蔽的射频电子箱与射频线圈隔开,从而促进了射频从体线圈到成像物体的传输。在本文中,我们展示了一种具有短光纤束的 SiPM-PET 系统的测试结果,用于同时进行 PET-MR 成像。我们构建了 SiPM-PET 系统,该系统由 12 个 SiPM-PET 模块组成;每个模块都由硅酸镥钇闪烁晶体块、31mm 光纤束、Hamamatsu 多像素光子计数器 S11064-050P 和一个用铜屏蔽的信号处理盒组成。SiPM-PET 系统的面对面距离为 71mm,放置在 3T MRI 内。一个放置在 SiPM-PET 系统内部的小表面线圈用于接收来自体模的信号,而体线圈则发送 RF 脉冲。在同时进行的 PET-MR 成像过程中,SiPM-PET 系统的性能几乎没有下降,并且对使用涡轮自旋回波(TSE)、梯度回波或 3D 扰相梯度回波序列的 MR 图像没有明显的降级。在 MRI 扫描仪内部有和没有 SiPM-PET 的情况下进行的 EPI 成像 MR 图像明显不如使用 TSE 序列获得的图像。

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