首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of a circular shape Si-PM-based detector ring for breast-dedicated PET system
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Development of a circular shape Si-PM-based detector ring for breast-dedicated PET system

机译:研发用于乳腺专用PET系统的圆形Si-PM基检测器环

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摘要

In clinical situations, various breast-dedicated positron emission tomography (PET) systems have been used. However, clinical breast-dedicated PET systems have polygonal detector ring. Polygonal detector ring sometimes causes image artifact, so complicated reconstruction algorithm is needed to reduce artifact. Consequently, we developed a circular detector ring for breast-dedicated PET to obtain images without artifact using a simple reconstruction algorithm. We used Lu, Lu_(1.9)Gd_(0.1)SiO_3 (LGSO) scintillator block which was made of 1.5 x 1.9 x 15 mm pixels that were arranged in an 8 x 24 matrix. As photodetectors, we used silicon photomultiplier (Si-PM) arrays whose channel size was 3x3 mm. A detector unit was composed of four scintillator blocks, 16 Si-PM arrays and a light guide. The developed detector unit had angled configuration since the light guide was bending. A detector unit had three gaps with an angle of 5.625° between scintillator blocks. With these configurations, we could arrange 64 scintillator blocks in nearly circular shape (regular 64-sided polygon) using 16 detector units. The use of the smaller number of detector units could reduce the size of the front-end electronics circuits. The inner diameter of the developed detector ring was 260 mm. This size was similar to those of brain PET systems, so our breast-dedicated PET detector ring can measure not only breast but also brain. Measured radial, tangential and axial spatial resolution of the detector ring reconstructed by the filtered back-projection (FBP) algorithm were 2.1 mm FWHM, 2.0 mm FWHM and 1.7 mm FWHM at center of field of view (FOV), respectively. The sensitivity was 2.0% at center of the axial FOV. With the developed detector ring, we could obtain high resolution image of the breast phantom and the brain phantom. We conclude that our developed Si-PM-based detector ring is promising for a high resolution breast-dedicated PET system that can also be used for brain PET system.
机译:在临床情况下,已经使用了各种乳房专用的正电子发射断层扫描(PET)系统。但是,临床上专用于胸部的PET系统具有多边形检测器环。多边形检测器环有时会导致图像伪影,因此需要复杂的重建算法来减少伪影。因此,我们开发了一种用于乳腺专用PET的圆形检测器环,以使用简单的重建算法获得没有伪影的图像。我们使用Lu,Lu_(1.9)Gd_(0.1)SiO_3(LGSO)闪烁体模块,该模块由1.5 x 1.9 x 15 mm像素制成,并以8 x 24矩阵形式排列。作为光电探测器,我们使用了通道尺寸为3x3 mm的硅光电倍增管(Si-PM)阵列。一个探测器单元由四个闪烁体块,16个Si-PM阵列和一个光导组成。由于光导弯曲,因此开发的检测器单元具有倾斜的配置。检测器单元在闪烁体块之间具有三个间隙,它们之间的夹角为5.625°。通过这些配置,我们可以使用16个探测器单元将64个闪烁体块布置成接近圆形的形状(规则的64面多边形)。使用较少数量的检测器单元可以减小前端电子电路的尺寸。显影的检测器环的内径为260毫米。这个尺寸类似于大脑PET系统的尺寸,因此我们专用于乳房的PET检测器环不仅可以测量乳房,还可以测量大脑。通过滤波反投影(FBP)算法重建的检测器环的径向,切向和轴向空间分辨率在视场(FOV)处分别为2.1 mm FWHM,2.0 mm FWHM和1.7 mm FWHM。轴向FOV中心的灵敏度为2.0%。借助开发的探测器环,我们可以获得乳房幻像和大脑幻像的高分辨率图像。我们得出的结论是,我们开发的基于Si-PM的检测器环有望用于高分辨率乳腺专用PET系统,该系统也可用于脑部PET系统。

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