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    • 2. 发明授权
    • Spectral CT
    • 光谱CT
    • US08442184B2
    • 2013-05-14
    • US12996985
    • 2009-06-01
    • Peter ForthmannUdo Van StevendaalEwald RoesslMichael GrassRoland ProksaJens-Peter Schlomka
    • Peter ForthmannUdo Van StevendaalEwald RoesslMichael GrassRoland ProksaJens-Peter Schlomka
    • A61B6/00
    • A61B6/405A61B6/032A61B6/4014A61B6/4035A61B6/4042A61B6/4241A61B6/482
    • An imaging system includes a radiation source (106, T1, T2, T3) that rotates about an examination region and emits radiation that traverses the examination region. The radiation source (106, T1, T2, T3) emits radiation having an energy spectrum that is selectively alternately switched between at least two different energy spectra during an imaging procedure. The system further includes an energy-resolving detector array (116, D1, D2, D3) that detects radiation traversing the examination region. The energy-resolving detector array (116, D1, D2, D3) resolves the detected radiation over at least two different energy ranges and produces energy-resolved output signals as a function of both emission energy spectrum and energy range. The system further includes a reconstructor (126) that performs a spectral reconstruction of the energy-resolved output signals. In another embodiment, the detector array (116) includes a photon-counting detector array (116).
    • 成像系统包括围绕检查区域旋转并且发射穿过检查区域的辐射的辐射源(106,T1,T2,T3)。 辐射源(106,T1,T2,T3)发射具有在成像过程期间在至少两个不同能量谱之间选择性交替切换的能谱的辐射。 该系统还包括检测穿过检查区域的辐射的能量分辨检测器阵列(116,D1,D2,D3)。 能量分辨检测器阵列(116,D1,D2,D3)通过至少两个不同的能量范围来解析检测到的辐射,并且产生作为发射能量谱和能量范围的函数的能量分辨的输出信号。 该系统还包括执行能量分辨输出信号的频谱重建的重建器(126)。 在另一个实施例中,检测器阵列(116)包括光子计数检测器阵列(116)。
    • 8. 发明申请
    • SPECTRAL CT
    • 光谱CT
    • US20110096892A1
    • 2011-04-28
    • US12996985
    • 2009-06-01
    • Peter ForthmannUdo Van StevendaalEwald RoesslMichael GrassRoland ProksaJens-Peter Schlomka
    • Peter ForthmannUdo Van StevendaalEwald RoesslMichael GrassRoland ProksaJens-Peter Schlomka
    • H05G1/60
    • A61B6/405A61B6/032A61B6/4014A61B6/4035A61B6/4042A61B6/4241A61B6/482
    • An imaging system includes a radiation source (106, T1, T2, T3) that rotates about an examination region and emits radiation that traverses the examination region. The radiation source (106, T1, T2, T3) emits radiation having an energy spectrum that is selectively alternately switched between at least two different energy spectra during an imaging procedure. The system further includes an energy-resolving detector array (116, D1, D2, D3) that detects radiation traversing the examination region. The energy-resolving detector array (116, D1, D2, D3) resolves the detected radiation over at least two different energy ranges and produces energy-resolved output signals as a function of both emission energy spectrum and energy range. The system further includes a reconstructor (126) that performs a spectral reconstruction of the energy-resolved output signals. In another embodiment, the detector array (116) includes a photon-counting detector array (116).
    • 成像系统包括围绕检查区域旋转并且发射穿过检查区域的辐射的辐射源(106,T1,T2,T3)。 辐射源(106,T1,T2,T3)发射具有在成像过程期间在至少两个不同能量谱之间选择性交替切换的能谱的辐射。 该系统还包括检测穿过检查区域的辐射的能量分辨检测器阵列(116,D1,D2,D3)。 能量分辨检测器阵列(116,D1,D2,D3)通过至少两个不同的能量范围来解析检测到的辐射,并且产生作为发射能量谱和能量范围的函数的能量分辨的输出信号。 该系统还包括执行能量分辨输出信号的频谱重建的重建器(126)。 在另一个实施例中,检测器阵列(116)包括光子计数检测器阵列(116)。
    • 10. 发明申请
    • OBJECT LOCALIZATION APPARATUS
    • 对象本地化设备
    • US20120302876A1
    • 2012-11-29
    • US13575828
    • 2011-01-31
    • Udo Van StevendaalMichael Grass
    • Udo Van StevendaalMichael Grass
    • A61B6/00G06K9/00
    • A61B6/12A61B6/466A61B6/504A61B6/547A61B34/20A61B2034/2065A61M25/0108
    • The invention relates to an object localization apparatus for localizing an object having markers based on a projection image. An object function (8) is provided along x-z positions (9, 20 . . . 25), wherein the x-z positions (9, 20 . . . 25) are defined by pairs of an x position being a position of a recognized projected marker along a fictive line on the recognized projected object in a projection plane and a z position defining a position in a direction being outside the projection plane. The position is determined based on the object function (8) which is modified by varying the z positions such that distances between the x-z positions along the object function (8) are adapted to distances between the markers of the object. This allows the object localization apparatus to determine the position with a reduced number of projection images, in particular, with only a single projection image.
    • 本发明涉及一种用于基于投影图像来定位具有标记的物体的物体定位装置。 沿xz位置(9,20,25)提供对象功能(8),其中xz位置(9,20,25)由x位置的对定义,该位置是识别的投影标记的位置 沿着在投影平面中识别的投影物体上的假想线,并且限定在投影平面外的方向上的位置的az位置。 基于通过改变z位置来修改的对象函数(8)确定位置,使得沿着对象函数(8)的x-z位置之间的距离适合于对象的标记之间的距离。 这允许物体定位装置确定具有减少数量的投影图像的位置,特别是仅使用单个投影图像。