Raylman Raymond R, Majewski Stan, Lemieux Susan K, Velan S Sendhil, Kross Brian, Popov Vladimir, Smith Mark F, Weisenberger Andrew G, Zorn Carl, Marano Gary D
Center for Advanced Imaging, Department of Radiology, Box 9236, West Virginia University, Morgantown, WV, USA.
Phys Med Biol. 2006 Dec 21;51(24):6371-9. doi: 10.1088/0031-9155/51/24/006. Epub 2006 Nov 23.
Multi-modality imaging is rapidly becoming a valuable tool in the diagnosis of disease and in the development of new drugs. Functional images produced with PET fused with anatomical structure images created by MRI will allow the correlation of form with function. Our group is developing a system to acquire MRI and PET images contemporaneously. The prototype device consists of two opposed detector heads, operating in coincidence mode. Each MRI-PET detector module consists of an array of LSO detector elements coupled through a long fibre optic light guide to a single Hamamatsu flat panel position-sensitive photomultiplier tube (PSPMT). The use of light guides allows the PSPMTs to be positioned outside the bore of a 3T MRI scanner where the magnetic field is relatively small. To test the device, simultaneous MRI and PET images of the brain of a male Sprague Dawley rat injected with FDG were successfully obtained. The images revealed no noticeable artefacts in either image set. Future work includes the construction of a full ring PET scanner, improved light guides and construction of a specialized MRI coil to permit higher quality MRI imaging.
多模态成像正迅速成为疾病诊断和新药研发中的一项重要工具。正电子发射断层扫描(PET)生成的功能图像与磁共振成像(MRI)创建的解剖结构图像相融合,将能够实现形态与功能的关联。我们团队正在开发一种能够同时采集MRI和PET图像的系统。该原型设备由两个相对的探测器头组成,工作在符合模式下。每个MRI-PET探测器模块由一组硅酸镥(LSO)探测器元件阵列组成,这些元件通过一根长光纤光导与单个滨松平板位置敏感光电倍增管(PSPMT)相连。光导的使用使得PSPMT能够放置在3T MRI扫描仪磁孔外部磁场相对较小的位置。为了测试该设备,成功获取了一只注射了氟代脱氧葡萄糖(FDG)的雄性斯普拉格-道利大鼠脑部的同步MRI和PET图像。图像显示两组图像中均未出现明显伪影。未来的工作包括构建一个全环PET扫描仪、改进光导以及构建一个专门的MRI线圈以实现更高质量的MRI成像。