首页> 外国专利> GAMMA RAY DETECTOR FOR POSITRON EMISSION TOMOGRAPHY (PET) AND SINGLE PHOTON EMMISSION COMPUTED TOMOGRAPHY (SPECT)

GAMMA RAY DETECTOR FOR POSITRON EMISSION TOMOGRAPHY (PET) AND SINGLE PHOTON EMMISSION COMPUTED TOMOGRAPHY (SPECT)

机译:用于正电子发射断层摄影(PET)和单光子发射计算机断层摄影(SPECT)的伽玛射线探测器

摘要

The invention relates to a detector module (1) for a Positron Emission Tomograph (PET) and for Single Photon Emission Computed Tomography (SPECT) comprising a matrix (3) of scintillator crystals, said matrix having a first side and a second side opposite to said first side, each scintillator crystal having a first end (14) and a second end (15), said scintillator crystals (2) being oriented parallel to each other, whereby said first end (14) and said second end (15) of each of said scintillator crystals (2) coincide with said first side and said second side of said matrix (3), respectively; a first light sensitive detector (6) producing an electrical signal proportional to the amount of light detected, being optically connected to said first side of said matrix (3), said first light sensitive detector (6) being position sensitive; and a second light sensitive detector (7) producing electrical signal proportional to the amount of light detected, said second light sensitive detector (7) being optically connected to said second side of said matrix (3), wherein said second light sensitive detector (7) is positioned sensitive. Using said detector module (1) a method to determine the 3D-coordinates of a point of interaction of a gamma quantum (Ϝ1, Ϝ2) with said detector module (1) is disclosed method. This allows to use signals from compton seattered Ϝ 's to enhance the sensitivity of a Positron Emission Tomograph scanner provided being composed of said detection modules (1) without parallax errors.
机译:本发明涉及一种用于正电子发射断层摄影术(PET)和用于单光子发射计算机断层摄影术(SPECT)的检测器模块(1),其包括闪烁体晶体的矩阵(3),所述矩阵的第一侧和第二侧与闪烁体相反。所述第一侧面,每个闪烁体晶体具有第一端(14)和第二端(15),所述闪烁体晶体(2)彼此平行地取向,由此所述第一端(14)和所述第二端(15)每个所述闪烁体晶体(2)分别与所述基质(3)的所述第一面和所述第二面重合。第一光敏检测器(6)产生与检测到的光量成比例的电信号,并与所述矩阵(3)的所述第一侧光学连接,所述第一光敏检测器(6)是位置敏感的;第二光敏检测器(7)产生与检测到的光量成比例的电信号,所述第二光敏检测器(7)光学连接到所述矩阵(3)的所述第二侧,其中所述第二光敏检测器(7) )放在敏感位置。使用所述检测器模块(1),公开了一种确定伽马量子(Ϝ1,,2)与所述检测器模块(1)的相互作用点的3D坐标的方法。这允许使用来自康普顿seat的信号来增强正电子发射断层扫描仪扫描仪的灵敏度,该正电子发射断层扫描仪扫描仪由所述检测模块(1)组成,且没有视差误差。

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