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    • 4. 发明授权
    • Method and system for associating an EKG waveform with a CT image
    • 将EKG波形与CT图像相关联的方法和系统
    • US07477928B2
    • 2009-01-13
    • US10063840
    • 2002-05-17
    • Kishore C. AcharyaDarin R. OkerlundSteven J. WoloschekMark E. Woodford
    • Kishore C. AcharyaDarin R. OkerlundSteven J. WoloschekMark E. Woodford
    • A61B5/05
    • A61B6/541
    • A method for associating EKG waveform data with computed tomography image data using a data synchronization scheme including generating the EKG waveform data using an electrocardiogram device, operating a computed tomography imaging system so as to create the computed tomography image data, communicating an exposure marker-in signal to the electrocardiogram device such that the exposure marker-in signal is associated with the EKG waveform data and processing the computed tomography image data, the EKG waveform data and the exposure marker-in signal, so as to correlate the EKG waveform data with the computed tomography image data. Also claimed is a medium encoded with a machine-readable computer program code for associating EKG waveform data with image data generated by an imaging system using a data synchronization scheme, the medium including instructions for causing controller to implement the aforementioned method.
    • 一种使用包括使用心电图设备生成EKG波形数据的数据同步方案将EKG波形数据与计算机断层摄影图像数据相关联的方法,操作计算机断层摄影成像系统,以便产生计算机断层摄影图像数据, 信号到心电图设备,使得曝光标记输入信号与EKG波形数据相关联并处理计算机断层摄影图像数据,EKG波形数据和曝光标记输入信号,以便将EKG波形数据与 计算机断层摄影图像数据。 还要求保护的是具有用于将EKG波形数据与使用数据同步方案的成像系统生成的图像数据相关联的机器可读计算机程序代码的介质,所述介质包括用于使控制器实现上述方法的指令。
    • 7. 发明授权
    • Method and apparatus for pitch-adaptive reconstruction in multislice helical computed tomographic systems
    • 用于多层螺旋计算机断层摄影系统中的俯仰自适应重建的方法和装置
    • US06529576B2
    • 2003-03-04
    • US09897173
    • 2001-06-29
    • Jiang HsiehKishore C. Acharya
    • Jiang HsiehKishore C. Acharya
    • A61B603
    • G06T11/006A61B6/027
    • One aspect of the present invention is a method that includes helically scanning an object at a selected helical pitch to acquire projection data of the object. The acquired projection data includes conjugate samples from single rows of the detector array of the CT imaging system and interrow samples. Projections in a plane of reconstruction (POR) are estimated based upon a selection of the projection data from the group consisting of the conjugate samples from at least one of the single rows, the interrow samples, and combinations thereof, the selection dependent upon the selected helical pitch. The estimated projections are filtered and backprojected to reconstruct at least one image of the object.
    • 本发明的一个方面是一种方法,其包括以选定的螺旋间距螺旋扫描物体以获取物体的投影数据。 所获取的投影数据包括来自CT成像系统的检测器阵列的单行和中间样本的共轭样本。 基于从由单行,中间样本及其组合中的至少一个组成的组的投影数据的选择来估计重建平面(POR)中的投影,所述选择取决于所选择的 螺距。 估计的投影被过滤和反向投影以重建对象的至少一个图像。
    • 9. 发明授权
    • Phantom and method for evaluating calcium scoring
    • 评估钙评分的幽灵和方法
    • US06674834B1
    • 2004-01-06
    • US09541157
    • 2000-03-31
    • Kishore C. AcharyaThad A. Heinold
    • Kishore C. AcharyaThad A. Heinold
    • A61B600
    • A61B6/583A61B6/032
    • A method is described for evaluating substance scoring, the scoring based on imaging system-generated images of an object having regions of interest due to possible presence of the substance, the method including the steps of simulating the regions of interest using a phantom having a plurality of volumes, each volume having dimensions simulating dimensions of a region of interest, each volume having a density representative of a substance density; generating images of the phantom; scoring the substance based on the phantom images; and comparing results of the substance scoring to expected phantom-image results. The above-described phantom and method allow a scoring system user to verify substance scoring accuracy and to compare scores resulting from different imaging systems, scanning methods and reconstruction algorithms.
    • 描述了用于评估物质评分的方法,基于由于物质的可能存在而具有感兴趣区域的对象的成像系统产生的图像的评分,该方法包括以下步骤:使用具有多个物体的体模来模拟感兴趣区域 的体积,每个体积具有模拟感兴趣区域的尺寸的尺寸,每个体积具有表示物质密度的密度; 生成幻影的图像; 基于幻影图像对该物质进行评分; 并将物质评分的结果与预期幻影图像结果进行比较。 上述幻影和方法允许评分系统用户验证物质评分精度,并比较由不同成像系统,扫描方法和重建算法得到的分数。