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    • 1. 发明授权
    • CT detector array having non pixelated scintillator array
    • 具有非象素化闪烁体阵列的CT检测器阵列
    • US07054408B2
    • 2006-05-30
    • US10249694
    • 2003-04-30
    • Haochuan JiangDavid M. HoffmanJames S. Vartuli
    • Haochuan JiangDavid M. HoffmanJames S. Vartuli
    • H05G1/64G01T1/202
    • G01T1/2985A61B6/032A61B6/4233G01N23/046G01N2223/419G01T1/1644G01T1/201G21K1/02
    • The present invention is a directed to a non-pixelated scintillator array for a CT detector as well as an apparatus and method of manufacturing same. The scintillator array is comprised of a number of ceramic fibers or single crystal fibers that are aligned in parallel with respect to one another. As a result, the pack has very high dose efficiency. Furthermore, each fiber is designed to direct light out to a photodiode with very low scattering loss. The fiber size (cross-sectional diameter) may be controlled such that smaller fibers may be fabricated for higher resolution applications. Moreover, because the fiber size can be controlled to be consistent throughout the scintillator may and the fibers are aligned in parallel with one another, the scintillator array, as a whole, also is uniform. Therefore, precise alignment with the photodiode array or the collimator assembly is not necessary.
    • 本发明涉及一种用于CT检测器的非像素化闪烁体阵列以及其制造方法。 闪烁体阵列包括相对于彼此平行对准的多个陶瓷纤维或单晶纤维。 因此,该包装具有非常高的剂量效率。 此外,每个光纤被设计成将光引导到具有非常低的散射损耗的光电二极管。 可以控制纤维尺寸(横截面直径),使得可以制造更小的纤维用于更高分辨率的应用。 此外,由于可以将整个闪烁器可以控制纤维尺寸一致,并且纤维彼此平行排列,所以闪烁体阵列整体上也是均匀的。 因此,不需要与光电二极管阵列或准直器组件的精确对准。
    • 3. 发明授权
    • CT detector array having non-pixelated scintillator array
    • 具有非象素化闪烁体阵列的CT检测器阵列
    • US07224766B2
    • 2007-05-29
    • US11029612
    • 2005-01-04
    • Haochuan JiangDavid M. HoffmanJames S. Vartuli
    • Haochuan JiangDavid M. HoffmanJames S. Vartuli
    • H05G1/60G01T1/20C09K11/08C09K11/77
    • G01T1/2985A61B6/032A61B6/4233G01N23/046G01N2223/419G01T1/1644G01T1/201G21K1/02
    • The present invention is a directed to a non-pixelated scintillator array for a CT detector as well as an apparatus and method of manufacturing same. The scintillator array is comprised of a number of ceramic fibers or single crystal fibers that are aligned in parallel with respect to one another. As a result, the pack has very high dose efficiency. Furthermore, each fiber is designed to direct light out to a photodiode with very low scattering loss. The fiber size (cross-sectional diameter) may be controlled such that smaller fibers may be fabricated for higher resolution applications. Moreover, because the fiber size can be controlled to be consistent throughout the scintillator array and the fibers are aligned in parallel with one another, the scintillator array, as a whole, also is uniform. Therefore, precise alignment with the photodiode array or the collimator assembly is not necessary.
    • 本发明涉及一种用于CT检测器的非像素化闪烁体阵列以及其制造方法。 闪烁体阵列包括相对于彼此平行对准的多个陶瓷纤维或单晶纤维。 因此,该包装具有非常高的剂量效率。 此外,每个光纤被设计成将光引导到具有非常低的散射损耗的光电二极管。 可以控制纤维尺寸(横截面直径),使得可以制造更小的纤维用于更高分辨率的应用。 此外,由于可以将整个闪烁体阵列的纤维尺寸控制为一致,并且纤维彼此平行排列,所以闪烁体阵列整体上也是均匀的。 因此,不需要与光电二极管阵列或准直器组件的精确对准。
    • 4. 发明授权
    • CT detector array having non-pixelated scintillator array
    • 具有非象素化闪烁体阵列的CT检测器阵列
    • US07643607B2
    • 2010-01-05
    • US11380488
    • 2006-04-27
    • Haochuan JiangDavid M. HoffmanJames S. Vartuli
    • Haochuan JiangDavid M. HoffmanJames S. Vartuli
    • H05G1/64G01T1/202
    • G01T1/2985A61B6/032A61B6/4233G01N23/046G01N2223/419G01T1/1644G01T1/201G21K1/02
    • The present invention is a directed to a non-pixelated scintillator array for a CT detector as well as an apparatus and method of manufacturing same. The scintillator array is comprised of a number of ceramic fibers or single crystal fibers that are aligned in parallel with respect to one another. As a result, the pack has very high dose efficiency. Furthermore, each fiber is designed to direct light out to a photodiode with very low scattering loss. The fiber size (cross-sectional diameter) may be controlled such that smaller fibers may be fabricated for higher resolution applications. Moreover, because the fiber size can be controlled to be consistent throughout the scintillator array and the fibers are aligned in parallel with one another, the scintillator array, as a whole, also is uniform. Therefore, precise alignment with the photodiode array or the collimator assembly is not necessary.
    • 本发明涉及一种用于CT检测器的非像素化闪烁体阵列以及其制造方法。 闪烁体阵列包括相对于彼此平行对准的多个陶瓷纤维或单晶纤维。 因此,该包装具有非常高的剂量效率。 此外,每个光纤被设计成将光引导到具有非常低的散射损耗的光电二极管。 可以控制纤维尺寸(横截面直径),使得可以制造更小的纤维用于更高分辨率的应用。 此外,由于可以将整个闪烁体阵列的纤维尺寸控制为一致,并且纤维彼此平行排列,所以闪烁体阵列整体上也是均匀的。 因此,不需要与光电二极管阵列或准直器组件的精确对准。
    • 5. 发明授权
    • System and method of aligning scintillator crystalline structures for computed tomography imaging
    • 用于计算机断层摄影成像的闪烁体晶体结构对准的系统和方法
    • US06704391B2
    • 2004-03-09
    • US10063235
    • 2002-04-02
    • David M. HoffmanHaochuan Jiang
    • David M. HoffmanHaochuan Jiang
    • H05G164
    • C30B30/04
    • The present invention discloses a method of aligning scintillator crystalline structures for computed tomography imaging and a system of use. Crystal seeds are deposited inside a glass melt and are then grown to form a plurality of layer crystallites. While growing the crystallites, a field is applied to align each crystallite structure in a uniform orientation. As a result, the crystallites are configured to reduce light scattering and improve the overall efficiency of the CT system. A CT system is disclosed implementing a scintillator array having a plurality of scintillators, each scintillator being formed of a plurality of uniformly aligned crystallites. Each crystallite includes a receiving surface and an exiting surface configured perpendicular to an x-ray beam. Further, the receiving surface and the exiting surface are connected by a plurality of surface walls arranged parallel to the x-ray beam.
    • 本发明公开了一种用于计算层析成像的闪烁体晶体结构和使用系统的对准方法。 将晶体种子沉积在玻璃熔体内,然后生长以形成多个层微晶。 在生长微晶的同时,施加一个场以使均匀取向的每个微晶结构对准。 结果,微晶被配置为减少光散射并提高CT系统的整体效率。 公开了一种实现具有多个闪烁体的闪烁体阵列的CT系统,每个闪烁体由多个均匀排列的微晶形成。 每个微晶包括接收表面和垂直于x射线束配置的出射表面。 此外,接收表面和出射表面通过平行于x射线束布置的多个表面壁连接。
    • 6. 发明授权
    • System and method of aligning scintillator crystalline structures for computed tomography imaging
    • 用于计算机断层摄影成像的闪烁体晶体结构对准的系统和方法
    • US06480563B2
    • 2002-11-12
    • US09681067
    • 2000-12-19
    • David M. HoffmanHaochuan Jiang
    • David M. HoffmanHaochuan Jiang
    • A61B600
    • C30B30/04
    • The present invention discloses a method of aligning scintillator crystalline structures for computed tomography imaging and a system of use. Crystal seeds are deposited inside a glass melt and are then grown to form a plurality of layer crystallites. While growing the crystallites, a field is applied to align each crystallite structure in a uniform orientation. As a result, the crystallites are configured to reduce light scattering and improve the overall efficiency of the CT system. A CT system is disclosed implementing a scintillator array having a plurality of scintillators, each scintillator being formed of a plurality of uniformly aligned crystallites. Each crystallite includes a receiving surface and an exiting surface configured perpendicular to an x-ray beam. Further, the receiving surface and the exiting surface are connected by a plurality of surface walls arranged parallel to the x-ray beam.
    • 本发明公开了一种用于计算层析成像的闪烁体晶体结构和使用系统的对准方法。 将晶体种子沉积在玻璃熔体内,然后生长以形成多个层微晶。 在生长微晶的同时,施加一个场以使均匀取向的每个微晶结构对准。 结果,微晶被配置为减少光散射并提高CT系统的整体效率。 公开了一种实现具有多个闪烁体的闪烁体阵列的CT系统,每个闪烁体由多个均匀排列的微晶形成。 每个微晶包括接收表面和垂直于x射线束配置的出射表面。 此外,接收表面和出射表面通过平行于x射线束布置的多个表面壁连接。