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    • 5. 发明授权
    • Dual screen radiographic detector with improved spatial sampling
    • 双屏放射线检测器,具有改进的空间采样
    • US08729478B2
    • 2014-05-20
    • US12797114
    • 2010-06-09
    • Timothy J. TredwellMark E. ShaferRobert W. KulpinskiTimothy J. Wojcik
    • Timothy J. TredwellMark E. ShaferRobert W. KulpinskiTimothy J. Wojcik
    • G01T1/10G01T1/20
    • G01T1/2018
    • Embodiments of radiographic imaging apparatus and methods for operating the same can include a first scintillator, a second scintillator, a plurality of first photosensitive elements, and a plurality of second photosensitive elements. The plurality of first photosensitive elements receives light from the first scintillator and has first photosensitive element characteristics chosen to cooperate with the first scintillator properties. The plurality of second photosensitive elements are arranged to receive light from the second scintillator and has second photosensitive element characteristics different from the first photosensitive element characteristics and chosen to cooperate with the second scintillator properties. Further, the first scintillator can have first scintillator properties and the second scintillator can have second scintillator properties different from the first scintillator properties.
    • 射线照相成像设备及其操作方法的实施例可以包括第一闪烁体,第二闪烁体,多个第一感光元件和多个第二感光元件。 多个第一感光元件接收来自第一闪烁体的光,并且具有选择与第一闪烁体性质配合的第一光敏元件特性。 多个第二光敏元件布置成接收来自第二闪烁体的光,并且具有与第一光敏元件特性不同的第二光敏元件特性,并选择与第二闪烁体特性配合。 此外,第一闪烁体可以具有第一闪烁体性质,而第二闪烁体可以具有与第一闪烁体性质不同的第二闪烁体性质。
    • 8. 发明授权
    • Single sided dual scanning for computed radiography
    • 用于计算机X线摄影的单面双扫描
    • US07622730B2
    • 2009-11-24
    • US12204901
    • 2008-09-05
    • Robert W. Kulpinski
    • Robert W. Kulpinski
    • G01T1/105
    • G01T1/2014
    • A radiation image formation read out method for a storage phosphor screen. A phosphor screen is exposed to a first stimulating radiation from a first side of the screen to release a first stimulated radiation in the pattern of the stored image. The first stimulating radiation is at a first power level, a first scan speed, and a first set of scanning parameters and is photoelectrically detected. The storage phosphor screen is again exposed to a second stimulating radiation from the first side of the screen to release a second stimulated radiation in the pattern of the stored image. The first stimulated radiation has a greater amount of high spatial frequency image data than the second stimulated radiation. The second stimulating radiation is at a second power level, a second scan speed, and a second set of scanning parameters. The second scanning exposure is higher than the first scanning exposure and the second set of scanning parameters differs in at least one parameter from the first set of scanning parameters.
    • 一种用于存储荧光屏的放射成像读出方法。 荧光屏暴露于来自屏幕的第一侧的第一刺激辐射以释放存储图像的图案中的第一受激辐射。 第一刺激辐射处于第一功率水平,第一扫描速度和第一组扫描参数,并被光电检测。 存储荧光屏再次暴露于来自屏幕第一侧的第二刺激辐射,以释放所存储图像图案中的第二受激辐射。 第一受激辐射具有比第二受激辐射更大量的高空间频率图像数据。 第二刺激辐射处于第二功率水平,第二扫描速度和第二组扫描参数。 第二扫描曝光高于第一扫描曝光,并且第二组扫描参数在至少一个参数与第一组扫描参数之间不同。
    • 10. 发明授权
    • Optimized storage phosphor erase time
    • 优化存储磷光体的擦除时间
    • US5627381A
    • 1997-05-06
    • US620433
    • 1996-03-22
    • Robert W. Kulpinski
    • Robert W. Kulpinski
    • G03B42/02
    • G03B42/02
    • A storage phosphor imaging system includes a scanner for scanning a storage phosphor storing an x-ray image to produce an x-ray light image, a converter for converting the x-ray light image into a digital x-ray image signal having a range of code values, and a storage phosphor erase light assembly for erasing the storage phosphor of substantially all residual image. Apparatus for controlling the erase light assembly includes a digital image processor for determining the maximum code value of a digital x-ray image signal which is produced from an x-ray image stored in a storage phosphor to be erased; and a controller for controlling the time of actuation of the erase light assembly as a function of the determined maximum code value.
    • 存储磷光体成像系统包括扫描器,用于扫描存储x射线图像的存储荧光体以产生X射线光图像;转换器,用于将x射线光图像转换成具有范围的x射线图像信号, 代码值和用于擦除基本上所有残留图像的存储磷光体的存储磷光体擦除光组件。 用于控制擦除光组件的设备包括:数字图像处理器,用于确定从要擦除的存储荧光粉中存储的x射线图像产生的数字X射线图像信号的最大码值; 以及控制器,用于根据所确定的最大代码值来控制擦除光组件的致动时间。