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Reconstruction of 3D image datasets from X-ray cone-beam data

机译:从X射线锥束数据重建3D图像数据集

摘要

The invention is directed to a method for producing a 3D image dataset of an object (20) with an imaging system (1) having an X-ray source (4) for emitting photon rays in a cone beam and a detector (10) comprising a two-dimensional array of detector elements adapted for receiving photons emitted by the X-ray source, the method comprising: acquiring (100) a series of two-dimensional arrays of cone beam data from the detector (10) while the source (4) moves along a substantially planar trajectory (40) around the object to be imaged, the trajectory being described by a series of source points serially numbered by a counter parameter; and reconstructing a 3D image from the cone beam data by performing the following steps:A) differentiating the cone beam data with respect to the counter parameter (λ) of the source trajectory at fixed ray direction (α) to produce a derivative of the cone beam data;B) filtering the derivative with a Hilbert-like filter to produce filtered cone beam data;C) either before step A), or after step B) multiplying the acquired cone beam data or the filtered cone beam data, respectively, with a redundancy weighting function; andD) back-projecting the cone beam data to compute a 3D image dataset.;The invention is also directed to an imaging system (1) and a computer program product.
机译:本发明涉及一种用于产生具有成像系统(1)的物体(20)的3D图像数据集的方法,该成像系统具有用于发射锥形束中的光子射线的X射线源(4)和检测器(10),该检测器包括适于接收由X射线源发射的光子的检测器元件的二维阵列,该方法包括:在源(4)从检测器(10)获取(100)一系列锥束数据的二维阵列。 )沿着围绕要成像的对象的大致平面的轨迹(40)移动,该轨迹由一系列由反参数编号的源点描述;并通过执行以下步骤从锥束数据重建3D图像:A)相对于在固定射线方向(α)上的源轨迹的反参数(λ)对锥束数据进行微分以产生锥束数据的导数;B)用希尔伯特型滤波器对导数进行滤波以产生滤波后的锥束数据;C)在步骤A)之前或步骤B)之后,分别将获取的锥束数据或滤波后的锥束数据与冗余加权函数相乘;和D)反投影锥形束数据以计算3D图像数据集。本发明还涉及成像系统(1)和计算机程序产品。

著录项

  • 公开/公告号EP2317477B1

    专利类型

  • 公开/公告日2013-03-27

    原文格式PDF

  • 申请/专利权人 SIEMENS AG;

    申请/专利号EP20100186932

  • 发明设计人 DENNERLEIN FRANK;BOESE JAN;KUNZE HOLGER;

    申请日2010-10-08

  • 分类号G06T11/00;

  • 国家 EP

  • 入库时间 2022-08-21 16:33:39

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