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    • 2. 发明授权
    • X-ray computed tomography apparatus and image processing apparatus
    • X射线计算机断层摄影装置和图像处理装置
    • US08731267B2
    • 2014-05-20
    • US12892091
    • 2010-09-28
    • Satoru Nakanishi
    • Satoru Nakanishi
    • G06K9/00
    • A61B6/032G06T11/005
    • According to one embodiment, An X-ray CT apparatus includes acquisition unit, intermediate image generating unit, weighting factor calculating unit, and resultant image generating unit. The intermediate image generating unit generates a first image based on a first projection data set and a second image based on a second projection data set. The first projection data set falls within a first view angle range of projection data acquired by the acquisition unit. The second projection data set falls within a second view angle range of the projection data. The second view angle range is narrower than the first view angle range. The weighting factor calculating unit calculates a weighting factor corresponding to a pixel value difference between the first image and the second image. The resultant image generating unit generates a resultant image associated with weighted addition of the first image and the second image based on the weighting factor.
    • 根据一个实施例,X射线CT装置包括获取单元,中间图像生成单元,加权因子计算单元和合成图像生成单元。 中间图像生成单元基于第一投影数据集和基于第二投影数据集的第二图像生成第一图像。 第一投影数据集落在由获取单元获取的投影数据的第一视角范围内。 第二投影数据集落入投影数据的第二视角范围内。 第二视角范围比第一视角范围窄。 加权系数计算单元计算与第一图像和第二图像之间的像素值差对应的加权因子。 所得到的图像生成单元基于加权因子生成与第一图像和第二图像的加权相加相关联的合成图像。
    • 3. 发明授权
    • Automatic motion map generation in helical CT
    • 螺旋CT中自动运动图生成
    • US08478013B2
    • 2013-07-02
    • US12787166
    • 2010-05-25
    • Satoru NakanishiBe-Shan S. Chiang
    • Satoru NakanishiBe-Shan S. Chiang
    • G06K9/00A61B6/00
    • G06T11/005G06T2211/412
    • As an illustration of generating a motion map, although the cardiac CT is described for selecting an optimal phase, the disclosure is not limited to the cardiac CT. For the cardiac CT, the cardiac phase map is efficiently generated based upon helical scan data, and the optimal phase is selected within a reasonable time. At the same time, the optimal phase is accurately determined based upon complementary rays as indexes for minimal movement so as to select the projection data for minimizing artifacts in reconstructed cardiac images. The helically scanned data reflect motion within the same cardiac cycle or over the continuous cardiac cycles. The application of the complementary ray technique to the helically scanned data is accomplished by three-dimensionally determining a pair of the complementary rays in order to take into account motion within the same cardiac cycle or over the continuous cardiac cycles. The absolute sum of the differences for the top ray and or the bottom ray is determined in order to determine the amount of cardiac motion.
    • 作为生成运动图的说明,虽然描述了用于选择最佳相位的心脏CT,但是本公开不限于心脏CT。 对于心脏CT,基于螺旋扫描数据有效地生成心脏相位图,并且在合理的时间内选择最佳相位。 同时,基于互补射线作为最小运动的指标精确地确定最佳相位,以便选择用于最小化重建的心脏图像中的假象的投影数据。 螺旋扫描的数据反映在相同的心动周期或连续的心动周期内的运动。 将互补射线技术应用于螺旋扫描的数据是通过三维地确定一对互补射线来实现的,以便考虑在相同的心动周期内或在连续的心动周期上的运动。 确定顶部射线和/或底部射线的差异的绝对总和以确定心脏运动的量。
    • 8. 发明申请
    • X-RAY COMPUTED TOMOGRAPHY APPARATUS AND IMAGE PROCESSING METHOD
    • X射线计算机图像处理方法
    • US20110075905A1
    • 2011-03-31
    • US12882876
    • 2010-09-15
    • Yasuhiro NOSHISatoru NAKANISHI
    • Yasuhiro NOSHISatoru NAKANISHI
    • G06K9/00A61B6/03
    • A61B6/032A61B6/4233A61B6/466A61B6/5241
    • According to one embodiment, an X-ray computed tomography apparatus includes an X-ray generating unit and an area detector. The reconstruction processing unit reconstructs first and second volume data including an overlap region. The extraction unit extracts first and second slice images from the first and the second volume data respectively. The calculation unit calculates the difference value between a sum of pixel values in the first slice images and the sum of pixel values in the second slice images. The determination unit determines whether the difference value falls within a predetermined range. The combining unit combines the first and second volume data and sets a pixel value in the overlap region to a pixel value of the first volume data, a pixel value of the second volume data, or a value derived from pixel values of the first and second volume data.
    • 根据一个实施例,X射线计算机断层摄影装置包括X射线产生单元和区域检测器。 重构处理单元重建包括重叠区域的第一和第二体数据。 提取单元分别从第一和第二卷数据提取第一和第二切片图像。 计算单元计算第一切片图像中的像素值之和与第二切片图像中的像素值之和的差值。 确定单元确定差值是否在预定范围内。 组合单元组合第一和第二体积数据,并将重叠区域中的像素值设置为第一体积数据的像素值,第二体积数据的像素值或从第一和第二体积数据的像素值导出的值 卷数据。
    • 9. 发明授权
    • X-ray CT scanner and data processing method of X-ray CT scanner
    • X射线CT扫描仪和X射线CT扫描仪的数据处理方法
    • US07848480B2
    • 2010-12-07
    • US11776866
    • 2007-07-12
    • Satoru NakanishiNaruomi AkinoYasuo Saito
    • Satoru NakanishiNaruomi AkinoYasuo Saito
    • A61B6/03
    • A61B6/4014A61B6/032A61B6/541
    • An X-ray CT scanner includes X-ray tubes including a first X-ray tube and a second X-ray tube having fan angles different from each other, X-ray detectors including a first X-ray detector and a second X-ray detector which are respectively arranged to face the first X-ray tube and the second X-ray tube, collection data processing means for executing weighting processing to each of pieces of collection data including first collection data obtained by the first X-ray detector and second collection data obtained by the second X-ray detector to generate image data combined to be smooth in a direction corresponding to a channel direction of detection elements provided in the X-ray detectors, and image generating section for performing processing including image reconstruction processing with respect to pieces of collection data weighted by the collection data processing section to generate image data.
    • X射线CT扫描器包括X射线管,X射线管包括第一X射线管和具有彼此不同角度的扇形角的第二X射线管,X射线检测器包括第一X射线检测器和第二X射线 检测器,其分别布置为面对第一X射线管和第二X射线管,收集数据处理装置,用于对包括由第一X射线检测器获得的第一收集数据和第二X射线检测器的第二收集数据进行加权处理 通过第二X射线检测器获得的收集数据,以生成在与设置在X射线检测器中的检测元件的通道方向对应的方向上平滑化的图像数据;以及图像生成部,执行包括图像重建处理的处理 由收集数据处理部分加权的收集数据片段以生成图像数据。