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小动物用集成 PET/MRI 系统的设计与性能

Design and performance from an integrated PET/MRI system for small animals.

机构信息

Department of Electrical Engineering, Kobe City College of Technology, 8-3 Gakuen-Higashi-machi, Nishi-ku, Kobe 651-2194, Japan.

出版信息

Ann Nucl Med. 2010 Feb;24(2):89-98. doi: 10.1007/s12149-009-0333-6.

Abstract

OBJECTIVE

Although simultaneous measurements of PET and magnetic resonance imaging (MRI) can provide interesting results in molecular imaging research, most of the combined systems are huge and animal handling in the system is not easy. To minimize these problems, we developed a compact integrated PET/MRI (iPET/MRI) system for small animals.

METHODS

For the iPET/MRI system, a new MR-compatible PET and a permanent magnet open MRI were designed. In the MRI, a tunnel is opened at the yoke of the magnet. The position-sensitive photo-multiplier tubes (PSPMTs) of the MR-compatible PET are positioned at the back of the yoke where the magnetic field is sufficiently low. The scintillators for the PET system are positioned at the center of the MRI magnets, and the direction of the scintillation photons is changed by slanted light guides, and they are fed to the PSPMTs by 75 cm long optical fiber bundles. The PET detectors employed two types of LGSO crystals (1.9 mm x 2.2 mm x 6 mm and 7 mm) with different decay times (33 and 43 ns) for depth of interaction detection. Sixteen optical fiber-based block detectors are arranged in a 112 mm diameter ring.

RESULTS

The transaxial field-of-view (FOV) of the PET system is ~80 mm, and the axial FOV is 21 mm which can be enlarged by the axial motion of the PET detector ring during MRI acquisition. The transaxial and axial resolutions at the center of the PET system was 2.9 and 2.4 mm FWHM, respectively. The absolute sensitivity was 1.5% at the center of the axial FOV. Phantom images revealed no artifact in either the PET or MRI images. We successfully obtained simultaneously measured small animal images using the iPET/MRI system.

CONCLUSION

The open geometry of the developed iPET/ MRI facilitates easy accessibility to the subject. The iPET/ MRI system appears to be a promising tool for molecular imaging research.

摘要

目的

尽管 PET 和磁共振成像(MRI)的同步测量可以为分子成像研究提供有趣的结果,但大多数组合系统都非常庞大,并且在系统中进行动物处理并不容易。为了最小化这些问题,我们为小动物开发了一种紧凑的集成 PET/MRI(iPET/MRI)系统。

方法

对于 iPET/MRI 系统,设计了一种新型的兼容 MRI 的 PET 和永磁开放式 MRI。在 MRI 中,在磁体的轭上开一个隧道。兼容 MRI 的 PET 的位置灵敏光电倍增管(PSPMT)位于轭的背面,磁场足够低。PET 系统的闪烁体位于 MRI 磁铁的中心,闪烁光子的方向通过倾斜的光导改变,并通过 75 厘米长的光纤束输送到 PSPMT。PET 探测器采用两种类型的 LGSO 晶体(1.9mm×2.2mm×6mm 和 7mm),用于深度相互作用检测,具有不同的衰减时间(33ns 和 43ns)。十六个基于光纤的块状探测器以 112mm 直径的环排列。

结果

PET 系统的横向视野(FOV)约为 80mm,轴向 FOV 为 21mm,在 MRI 采集过程中 PET 探测器环的轴向运动可将其放大。PET 系统中心的横向和轴向分辨率分别为 2.9mm 和 2.4mm FWHM。轴向 FOV 中心的绝对灵敏度为 1.5%。在 PET 或 MRI 图像中均未发现伪影。我们成功地使用 iPET/MRI 系统同时获得了小动物的测量图像。

结论

所开发的 iPET/MRI 的开放式结构便于轻松接近研究对象。iPET/MRI 系统似乎是分子成像研究的一种有前途的工具。

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