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    • 1. 发明授权
    • Method for helical windmill artifact reduction with noise restoration for helical multislice CT
    • 螺旋式风车神经降低方法,用于螺旋多层CT的噪声恢复
    • US07623691B2
    • 2009-11-24
    • US10912183
    • 2004-08-06
    • Ilmar A. HeinKatsuyuki TaguchiMichael D. Silver
    • Ilmar A. HeinKatsuyuki TaguchiMichael D. Silver
    • G06K9/00
    • G06T5/002A61B6/027G06T5/003G06T5/50G06T2207/10081G06T2207/20221G06T2207/30004
    • A method of removing an imaging artifact in a medical image, including obtaining a first plurality of images, the first plurality of images collectively defining a first image volume; filtering the first plurality of images to create a second plurality of images, each image in the second plurality of images comprising an average of at least two images in the first plurality of images; selecting a first image from the first plurality of images; adding a lost noise image to a second image in the second plurality of images to create a noise restored image, the second image in the second plurality of images corresponding to the first image in the first plurality of images; determining a gradient image based on pixel values in the second plurality of images, the gradient image comprising a gradient value at each pixel location in the second image; and combining, based on the determined gradient image, the first image and the noise restored image to obtain a corrected image that does not contain the imaging artifact.
    • 一种去除医学图像中的成像伪影的方法,包括获得第一多个图像,所述第一多个图像共同限定第一图像体积; 过滤所述第一多个图像以创建第二多个图像,所述第二多个图像中的每个图像包括所述第一多个图像中的至少两个图像的平均值; 从所述第一多个图像中选择第一图像; 在所述第二多个图像中将丢失的噪声图像添加到第二图像以创建噪声恢复图像,所述第二多个图像中的所述第二图像对应于所述第一多个图像中的所述第一图像; 基于所述第二多个图像中的像素值确定梯度图像,所述梯度图像包括在所述第二图像中的每个像素位置处的梯度值; 并且基于所确定的梯度图像合并第一图像和噪声恢复图像,以获得不包含成像伪像的校正图像。
    • 3. 发明授权
    • Method for restoring truncated helical cone-beam computed tomography data
    • 截尾螺旋锥束计算机断层扫描数据的恢复方法
    • US07359478B2
    • 2008-04-15
    • US10990464
    • 2004-11-18
    • Aleksandr A. ZamyatinKatsuyuki TaguchiMichael D. Silver
    • Aleksandr A. ZamyatinKatsuyuki TaguchiMichael D. Silver
    • A61B6/03
    • G06T11/005A61B6/027G06T2211/432Y10S378/901
    • A method, system, and computer program product for compensating for the unavailability of projection data of a scanned object at a selected point, the selected point located outside a detection range of a detector. The method include the steps of obtaining projection data of the scanned object, and compensating for the unavailability of the projection data at the selected point based on the obtained projection data and coordinates of the selected point relative to the detector. The compensating step includes determining at least one complementary projection angle and coordinates of at least one complementary point based on a source projection angle and the coordinates of the selected point relative to the detector, and estimating the projection data value at the selected point based on the acquired projection data, the at least one complementary projection angle, and the coordinates of the at least one complementary point.
    • 一种方法,系统和计算机程序产品,用于补偿在选定点处扫描对象的投影数据的不可用性,该选定点位于检测器的检测范围之外。 该方法包括以下步骤:基于所获得的投影数据和相对于检测器的所选点的坐标来补偿所选择的投影数据的不可用性,从而获得扫描对象的投影数据。 补偿步骤包括基于源投影角度和所选点相对于检测器的坐标来确定至少一个互补点的至少一个互补投影角度和坐标,以及基于所选择的点估计所选点处的投影数据值 所获取的投影数据,所述至少一个互补投影角以及所述至少一个互补点的坐标。
    • 6. 发明授权
    • Computed tomography system and method
    • 计算机断层扫描系统和方法
    • US06466640B1
    • 2002-10-15
    • US09450121
    • 1999-11-26
    • Katsuyuki Taguchi
    • Katsuyuki Taguchi
    • A61B603
    • A61B6/541A61B6/027A61B6/032A61B6/542A61B6/583Y10S378/901
    • Method and system for computed tomography. Data is collected by irradiating a subject with x-rays. The data is interpolated and then weighted based upon the data collection time. The interpolated and weighted data is then used to reconstruct the image using fan beam reconstruction. The weighting function may by shifted in time. Signals may be obtained from the subject and used to control exposure, reduce the dose and provide automatic volumetric cardiac reconstruction. The method and system can increase the temporal and spatial resolution, and reconstruct images at different timing.
    • 计算机断层扫描的方法和系统。 通过用X射线照射受试者来收集数据。 数据内插,然后根据数据收集时间加权。 然后使用内插和加权数据来重建使用扇形束重构的图像。 加权函数可能会在时间上移位。 信号可以从受试者获得并用于控制暴露,减少剂量并提供自动体积心脏重建。 该方法和系统可以增加时间和空间分辨率,并在不同的时间重建图像。
    • 7. 发明授权
    • X-ray CT scanner with two-dimensional X-ray detector having unequal
element pitch in slice-thickness direction
    • 具有二维X射线检测器的X射线CT扫描仪在切片厚度方向上具有不等间距
    • US6157696A
    • 2000-12-05
    • US891709
    • 1997-07-09
    • Yasuo SaitoKazuyuki IhiraKatsuyuki TaguchiTatsuro SuzukiHiroaki MiyazakiKoichi MurakiHiroshi Aradate
    • Yasuo SaitoKazuyuki IhiraKatsuyuki TaguchiTatsuro SuzukiHiroaki MiyazakiKoichi MurakiHiroshi Aradate
    • A61B6/03H05G1/60
    • A61B6/5205A61B6/032A61B6/583
    • A multi-slice X-ray CT scanner is provided to realize high resolution and a wide scanned region in a slice-thickness direction for an object. In the X-ray CT scanner, an X-ray beam for slice imaging is radiated toward an object and scanned in a predetermined slice-thickness direction, a direction orthogonal to the slice-thickness direction being defined as a channel direction. The scanner comprises a two-dimensional X-ray detector, a data acquisition system, and an electrically combining unit. The detector has a plurality of X-ray detecting elements arranged in a two-dimensional array of both rows in the slice-thickness direction and columns in the channel direction, the detecting elements of each row being arranged in unequal pitches. The data acquisition system has a plurality of data acquiring elements arranged in a two-dimensional array of rows and columns, acquiring signals detected by the two-dimensional X-ray detector, and producing digital data proportional to the detected signals. The electrically combining unit electrically combines more than two columns of all the columns in the array of the X-ray detecting elements into at least two columns of all the columns in the array of the data acquiring elements in accordance with a given slice imaging condition. For example, each row of the array of the data acquiring elements are less in number of elements than each row of the array of the X-ray detecting elements.
    • 提供了一种多切片X射线CT扫描器,以实现对于物体的切片厚度方向的高分辨率和宽扫描区域。 在X射线CT扫描器中,将用于切片成像的X射线束朝向物体照射,并且以预定的切片厚度方向扫描,与切片厚度方向正交的方向被定义为通道方向。 扫描仪包括二维X射线检测器,数据采集系统和电合成单元。 检测器具有多个X射线检测元件,其排列成层厚方向的两列的二维阵列,并且在通道方向上具有列,每行的检测元件以不等间距排列。 数据采集​​系统具有排列成行和列的二维阵列的多个数据获取元件,获取由二维X射线检测器检测的信号,并产生与检测信号成比例的数字数据。 电合成单元根据给定的切片成像条件将X射线检测元件的阵列中的所有列的两列以上的列全部电合成数据获取元件的阵列中的所有列的至少两列。 例如,数据获取元件的阵列的每行比X射线检测元件的阵列的每一行的元素数量少。