首页> 外文会议> >Luminescence properties of LuYSiO/sub 5/:Ce, Gd/sub 2/SiO/sub 5/:Ce, and CsI:Tl single crystal scintillators under X-ray excitation, for use in medical imaging systems
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Luminescence properties of LuYSiO/sub 5/:Ce, Gd/sub 2/SiO/sub 5/:Ce, and CsI:Tl single crystal scintillators under X-ray excitation, for use in medical imaging systems

机译:用于医学成像系统的LuYSiO / sub 5 /:Ce,Gd / sub 2 / SiO / sub 5 /:Ce和CsI:Tl单晶闪烁体在X射线激发下的发光特性

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The luminescence of LuYSiO/sub 5/:Ce (LYSO:Ce) and Gd/sub 2/SiO/sub 5/:Ce (GSO:Ce) crystals was studied for use in tomographic medical X-ray imaging. Both crystals were compared to CsI:Tl scintillator, used in X-ray and gamma-ray imaging. LYSO:Ce and GSO:Ce are high density (7.1 g/cm/sup 3/ and 6.71 g/cm/sup 3/ respectively), high atomic number (71 for Lu and 64 for Gd), non-hydroscopic, and short decay time (40 ns and 60 ns respectively) scintillators. CsI:Tl is a slightly hygroscopic, high light yield (/spl ges/10/sup 4/ photons/MeV) scintillator but of relatively slow decay time (>200 ns). Evaluation was performed by determining: 1) the absolute luminescence efficiency (emitted light flux over incident X-ray exposure) in X-ray energies employed in general X-ray imaging (40-140 kV) and in mammographic X-ray imaging (22-49 kV), 2) the light emission spectrum, determined at various X-ray energies (22-140 kV), and 3) the spectral compatibility to optical photon detectors incorporated in medical imaging systems. The light emission performance of the three scintillation materials studied, were found adequately high for X-ray imaging. LYSO:Ce and GSO:Ce were found most efficient (between 8 and 12/sub /spl mu/W/spl times/m//sup -2/) in the range from 40 to 60 kV. LYSO:Ce and GSO:Ce were found adequately most compatible with the S-20 photocathode (0.902 and 0.903 respectively against 0.763 of CsI:Tl) and adequately compatible to a-Si photodiode (0.705 and 0.737 respectively against 0.851 of CsI:Tl).
机译:研究了LuYSiO / sub 5 /:Ce(LYSO:Ce)和Gd / sub 2 / SiO / sub 5 /:Ce(GSO:Ce)晶体的发光,用于X射线断层医学X射线成像。将两种晶体与用于X射线和γ射线成像的CsI:T1闪烁体进行比较。 LYSO:Ce和GSO:Ce具有高密度(分别为7.1 g / cm / sup 3 /和6.71 g / cm / sup 3 /),高原子序数(Lu的71和Gd的64),不吸水且短衰减时间(分别为40 ns和60 ns)闪烁体。 CsI:Tl是一种具有轻微吸湿性的高光产量(/ spl ges / 10 / sup 4 /光子/ MeV)闪烁体,但衰减时间相对较慢(> 200 ns)。通过确定以下条件进行评估:1)普通X射线成像(40-140 kV)和乳腺X射线成像(22)中使用的X射线能量中的绝对发光效率(入射X射线照射时发出的光通量) -49 kV),2)在各种X射线能量(22-140 kV)下确定的发光光谱以及3)与医学成像系统中包含的光学光子探测器的光谱兼容性。发现所研究的三种闪烁材料的发光性能对于X射线成像足够高。发现LYSO:Ce和GSO:Ce在40至60 kV范围内效率最高(8至12 / sub / spl mu / W / spl次/ m // sup -2 /之间)。发现LYSO:Ce和GSO:Ce与S-20光电阴极(分别对0.963 CsI:Tl的0.902和0.903)充分兼容,与a-Si光电二极管(对CsI:Tl的0.851的0.705和0.737分别)充分兼容。 。

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