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    • 1. 发明授权
    • Dynamic optimization of the signal-to-noise ratio of dual-energy attenuation data for reconstructing images
    • 动态优化用于重建图像的双能量衰减数据的信噪比
    • US08155422B2
    • 2012-04-10
    • US12293835
    • 2007-03-15
    • Andy ZieglerEwald Roessl
    • Andy ZieglerEwald Roessl
    • G06K9/00
    • G01T1/2985
    • It is described a method for dynamically optimizing the signal-to-noise ratio of attenuation data related to two different X-ray energies for reconstructing an image of an object under examination. The method comprises (a) estimating the thickness and the material composition of the object at a plurality of different projection angles, (b) for each of the various projection angles calculating for a variety of combinations of different first and second X-ray energies a corresponding common signal-to-noise ratio, (c) for each of the various projection angles choosing the first and the second X-ray energy causing the maximum corresponding common signal-to-noise ratio, and (d) for each of the various projection angles acquiring X-ray attenuation data of the object whereby the two X-ray energies are the X-ray energies causing a maximum signal-to-noise ratio assigned to the respective projection angle.
    • 描述了一种用于动态优化与两个不同X射线能量相关的衰减数据的信噪比的方法,用于重建被检查物体的图像。 该方法包括:(a)以多个不同的投影角度估计物体的厚度和材料成分,(b)对于针对不同的第一和第二X射线能量的各种组合计算的各种投影角度中的每一个 相应的公共信噪比,(c)对于选择第一和第二X射线能量的各种投影角度中的每一个引起最大相应的公共信噪比,(d)对于各种各样的 投影角度获取物体的X射线衰减数据,由此两个X射线能量是分配给各个投影角度的最大信噪比的X射线能量。
    • 3. 发明申请
    • DYNAMIC OPTIMIZATION OF THE SIGNAL-TO-NOISE RATIO OF DUAL-ENERGY ATTENUATION DATA FOR RECONSTRUCTING IMAGES
    • 用于重建图像的双能量衰减数据的信号噪声比的动态优化
    • US20100232669A1
    • 2010-09-16
    • US12293835
    • 2007-03-15
    • Andy ZieglerEwald Roessl
    • Andy ZieglerEwald Roessl
    • G06K9/00
    • G01T1/2985
    • It is described a method for dynamically optimizing the signal-to-noise ratio of attenuation data related to two different X-ray energies for reconstructing an image of an object under examination. The method comprises (a) estimating the thickness and the material composition of the object at a plurality of different projection angles, (b) for each of the various projection angles calculating for a variety of combinations of different first and second X-ray energies a corresponding common signal-to-noise ratio, (c) for each of the various projection angles choosing the first and the second X-ray energy causing the maximum corresponding common signal-to-noise ratio, and (d) for each of the various projection angles acquiring X-ray attenuation data of the object whereby the two X-ray energies are the X-ray energies causing a maximum signal-to-noise ratio assigned to the respective projection angle.
    • 描述了一种用于动态优化与两个不同X射线能量相关的衰减数据的信噪比的方法,用于重建被检查物体的图像。 该方法包括:(a)以多个不同的投影角度估计物体的厚度和材料成分,(b)对于针对不同的第一和第二X射线能量的各种组合计算的各种投影角度中的每一个 相应的公共信噪比,(c)对于选择第一和第二X射线能量的各种投影角度中的每一个引起最大相应的公共信噪比,(d)对于各种各样的 投影角度获取物体的X射线衰减数据,由此两个X射线能量是分配给各个投影角度的最大信噪比的X射线能量。
    • 7. 发明授权
    • Artifact correction
    • 神器纠正
    • US07526060B2
    • 2009-04-28
    • US10598663
    • 2005-03-08
    • Andy Ziegler
    • Andy Ziegler
    • A61B6/00
    • G06T11/006A61B6/5258G06T2211/424
    • The reconstruction of images of an object of interest may introduce artifacts along lines of high gradients of absorption values. According to an exemplary embodiment of the present invention, these artifacts may efficiently be removed by a statistical weighing during reconstruction of the image. Advantageously, according to an aspect of the present invention, the reconstruction of the image may be performed iteratively, wherein the updates are weighted with the intrinsic statistical error of the measured photon counts. This may lead to an efficient removal of artifacts.
    • 感兴趣对象的图像的重建可以沿着吸收值的高梯度线引入人为因素。 根据本发明的示例性实施例,通过在重建图像期间的统计称重可以有效地去除这些伪影。 有利地,根据本发明的一个方面,可以迭代地执行图像的重建,其中使用所测量的光子计数的固有统计误差对更新进行加权。 这可能导致有效地去除伪影。
    • 8. 发明申请
    • Image Processing System, Particularly for Circular and Helical Cone-Beam Ct
    • 图像处理系统,特别适用于圆锥和锥形锥束
    • US20080187195A1
    • 2008-08-07
    • US11911214
    • 2006-04-10
    • Thomas KohlerRoland ProksaAndy Ziegler
    • Thomas KohlerRoland ProksaAndy Ziegler
    • G06K9/00
    • G06T11/008G06T11/006
    • The invention relates to an examination apparatus with an X-ray device (10) for circular or helical cone-beam CT acquisition of projections images (Pi(E1), Pi(E2)) of a patient (1) with different energy spectra (E1, E2) and/or with an energy-resolved detection. By a combination of the projections, images (Ibone,i, Itissue,i) can be calculated that show predominantly the bone structure and the soft tissue, respectively. Therefore, a 3D model (Mbone) of the bone structure and a 3D model (Mtissue) of the tissue can be reconstructed separately. After removal of artifacts from the bone-structure model (Mbone), both separate 3D models can be integrated to a combined model (M) of the body volume with a high image quality.
    • 本发明涉及一种具有X射线装置(10)的检查装置,用于对投影图像进行圆形或螺旋锥束CT采集(P 1) 具有不同能量谱的患者(1)的患者(1)的患者(E 2) >)和/或能量分辨检测。 通过投影的组合,可以分别计算主要表现为骨骼结构和软组织的图像(I骨,I,I,I组织,i)。 因此,可以分别重建组织的骨骼结构的3D模型(M>骨头)和3D模型(M>组织)。 在从骨结构模型(骨骼)中去除人造物之后,两个分开的3D模型可以被整合到具有高图像质量的身体体积的组合模型(M)上。
    • 10. 发明授权
    • Energy spectrum reconstruction
    • 能谱重建
    • US08000434B2
    • 2011-08-16
    • US12373112
    • 2007-07-02
    • Andy ZieglerRoland Proksa
    • Andy ZieglerRoland Proksa
    • A61B6/00
    • G01T1/2985
    • A computed tomography system includes an x-ray source (108) that rotates about and emits radiation through an imaging region (116). At least one finite energy resolution detector (112) detects the emitted radiation. The at least one finite resolution detector (112) includes a plurality of sub-detectors (204). Each of the plurality of sub-detectors (204) is associated with one or more different energy thresholds. Each of the energy thresholds is used to count a number of incident photons based on a corresponding energy level. A reconstruction system (136) reconstructs the photon counts to generate one or more images of a subject residing within the imaging region (116).
    • 计算机断层摄影系统包括绕着成像区域(116)旋转并发射辐射的x射线源(108)。 至少一个有限能量分辨率检测器(112)检测发射的辐射。 所述至少一个有限分辨率检测器(112)包括多个子检测器(204)。 多个子检测器(204)中的每一个与一个或多个不同的能量阈值相关联。 每个能量阈值用于根据相应的能级对一些入射光子进行计数。 重建系统(136)重建光子计数以产生驻留在成像区域(116)内的对象的一个​​或多个图像。