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A new PET detector concept for compact preclinical high-resolution hybrid MR-PET

机译:用于紧凑型临床前高分辨率混合MR-PET的新型PET检测器概念

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This work presents a new PET detector concept for compact preclinical hybrid MR-PET. The detector concept is based on Linearly-Graded SiPM produced with current FBK RGB-HD technology. One 7.75 mm x 7.75 mm large sensor chip is coupled with optical grease to a black coated 8 mm x 8 mm large and 3 mm thick monolithic LYSO crystal. The readout is obtained from four readout channels with the linear encoding based on integrated resistors and the Center of Gravity approach.To characterize the new detector concept, the spatial and energy resolutions were measured. Therefore, the measurement setup was prepared to radiate a collimated beam to 25 different points perpendicular to the monolithic scintillator crystal. Starting in the center point of the crystal at 0 mm / 0 mm and sampling a grid with a pitch of 1.75 mm, all significant points of the detector were covered by the collimator beam.The measured intrinsic spatial resolution (FWHM) was 0.74 +/- 0.01 mm in x- and 0.69 +/- 0.01 mm in the y-direction at the center of the detector. At the same point, the measured energy resolution (FWHM) was 13.01 +/- 0.05 %. The mean intrinsic spatial resolution (FWHM) over the whole detector was 0.80 +/- 0.28 mm in x- and 0.72 +/- 0.19 mm in y-direction. The energy resolution (FWHM) of the detector was between 13 and 17.3 % with an average energy resolution of 15.7 +/- 1.0 %. Due to the reduced thickness, the sensitivity of this gamma detector is low but still higher than pixelated designs with the same thickness due to the monolithic crystals. Combining compact design, high spatial resolution, and high sensitivity, the detector concept is particularly suitable for applications where the scanner bore size is limited and high resolution is required — as is the case in small animal hybrid MR-PET.
机译:这项工作提出了一种用于紧凑型临床前混合MR-PET的新PET检测器概念。该检测器概念基于采用当前FBK RGB-HD技术生产的线性渐变SiPM。将一块7.75 mm x 7.75 mm大的传感器芯片与光学油脂耦合到涂有黑色涂层的8 mm x 8 mm大且3 mm厚的单片LYSO晶体。从四个读出通道获得读数,并基于集成电阻器和重心方法进行线性编码。为表征新的检测器概念,对空间和能量分辨率进行了测量。因此,准备了测量装置以将准直光束辐射到垂直于整体式闪烁体晶体的25个不同点。从晶体的中心点0 mm / 0 mm开始,以1.75 mm的间距采样一个栅格,探测器的所有重要点都被准直仪光束覆盖,测得的本征空间分辨率(FWHM)为0.74 + / -在探测器中心的x方向上为0.01毫米,在y方向上为0.69 +/- 0.01毫米。同时,测得的能量分辨率(FWHM)为13.01 +/- 0.05%。整个探测器的平均固有空间分辨率(FWHM)在x方向上为0.80 +/- 0.28 mm,在y方向上为0.72 +/- 0.19 mm。检测器的能量分辨率(FWHM)在13%至17.3%之间,平均能量分辨率为15.7 +/- 1.0%。由于厚度减小,因此这种伽马探测器的灵敏度较低,但仍比单片晶体具有相同厚度的像素化设计高。结合紧凑型设计,高空间分辨率和高灵敏度的特点,该检测器概念特别适用于扫描仪孔径受限且需要高分辨率的应用,例如小型动物混合MR-PET。

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