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    • 11. 发明授权
    • System for blood flow velocity determination using MR imaging
    • 使用MR成像进行血流速度测定的系统
    • US08487613B2
    • 2013-07-16
    • US12951104
    • 2010-11-22
    • Gary McNealChristopher GlielmiPeter Weale
    • Gary McNealChristopher GlielmiPeter Weale
    • G01R33/20G01V3/00
    • G01R33/56316
    • A system improves accuracy of blood flow peak velocity measurements as well as the speed and precision of an MR data acquisition workflow. A system for blood flow velocity determination in MR imaging comprises an MR imaging system. The MR imaging system acquires a three dimensional (3D) MR imaging dataset of a patient anatomical volume of interest and a one dimensional (1D) MR imaging dataset within the volume of interest automatically aligned in response to 3D vector directional information. An image data processor derives the 3D vector directional information by, deriving velocity magnitude data using the acquired 3D MR imaging dataset, identifying maximum velocity data using the derived velocity magnitude data and transforming the identified maximum velocity data to provide the 3D vector directional information. A calculation processor uses the acquired 1D MR imaging dataset to calculate a blood flow velocity in a direction determined by the 3D vector directional information.
    • 系统提高血流峰值速度测量的精度,以及MR数据采集工作流程的速度和精度。 MR成像中血液流速测定系统包括MR成像系统。 MR成像系统获取感兴趣的患者解剖体积的三维(3D)MR成像数据集,以及响应于3D矢量方向信息自动对齐的感兴趣体积内的一维(1D)MR成像数据集。 图像数据处理器通过使用获取的3D MR成像数据集导出速度幅度数据,使用导出的速度幅度数据识别最大速度数据并变换所识别的最大速度数据以提供3D矢量方向信息来导出3D矢量方向信息。 计算处理器使用获取的1D MR成像数据集来计算由3D矢量方向信息确定的方向上的血流速度。
    • 14. 发明授权
    • System for automated parameter setting in cardiac magnetic resonance imaging
    • 心脏磁共振成像自动参数设置系统
    • US09014783B2
    • 2015-04-21
    • US12721591
    • 2010-03-11
    • Wolfgang RehwaldPeter Weale
    • Wolfgang RehwaldPeter Weale
    • A61B5/055G01R33/56G01R33/567A61B5/00
    • A61B5/055A61B5/7285G01R33/5602G01R33/5676G06F19/00
    • A system automatically calculates optimal protocol parameters for dark-blood (DB) preparation and inversion recovery. The system automatically determines pulse sequence timing parameters for MR imaging with blood related signal suppression. The system comprises an acquisition processor for acquiring data indicating a patient heart rate. A pulse timing processor automatically determines an acquisition time of an image data set readout, relative to a blood signal suppression related magnetization preparation pulse sequence, by calculating the acquisition time in response to inputs including, (a) the acquired patient heart rate, (b) data indicating a type of image contrast of the pulse sequence employed and (c) data indicating whether an anatomical signal suppression related magnetization preparation pulse sequence used has a slice selective, or non-slice selective, data acquisition readout.
    • 系统自动计算黑血(DB)制备和反转恢复的最佳协议参数。 系统通过血液相关信号抑制自动确定MR成像的脉冲序列时序参数。 该系统包括用于获取指示患者心率的数据的采集处理器。 相对于血液信号抑制相关的磁化准备脉冲序列,脉冲定时处理器通过计算响应于包括(a)获得的患者心率(b)的输入的获取时间来自动确定图像数据组读出的获取时间 )数据,其指示使用的脉冲序列的图像对比度的类型;以及(c)指示所使用的解剖信号抑制相关磁化准备脉冲序列是否具有切片选择性或非切片选择性数据采集读出的数据。
    • 16. 发明申请
    • System for Blood Flow Velocity Determination using MR Imaging
    • 使用MR成像进行血流速度测定的系统
    • US20110175608A1
    • 2011-07-21
    • US12951104
    • 2010-11-22
    • Gary McNealChristopher GlielmiPeter Weale
    • Gary McNealChristopher GlielmiPeter Weale
    • G01R33/48
    • G01R33/56316
    • A system improves accuracy of blood flow peak velocity measurements as well as the speed and precision of an MR data acquisition workflow. A system for blood flow velocity determination in MR imaging comprises an MR imaging system. The MR imaging system acquires a three dimensional (3D) MR imaging dataset of a patient anatomical volume of interest and a one dimensional (1D) MR imaging dataset within the volume of interest automatically aligned in response to 3D vector directional information. An image data processor derives the 3D vector directional information by, deriving velocity magnitude data using the acquired 3D MR imaging dataset, identifying maximum velocity data using the derived velocity magnitude data and transforming the identified maximum velocity data to provide the 3D vector directional information. A calculation processor uses the acquired 1D MR imaging dataset to calculate a blood flow velocity in a direction determined by the 3D vector directional information.
    • 系统提高血流峰值速度测量的精度,以及MR数据采集工作流程的速度和精度。 MR成像中血液流速测定系统包括MR成像系统。 MR成像系统获取感兴趣的患者解剖体积的三维(3D)MR成像数据集,以及响应于3D矢量方向信息自动对齐的感兴趣体积内的一维(1D)MR成像数据集。 图像数据处理器通过使用获取的3D MR成像数据集导出速度幅度数据,使用导出的速度幅度数据识别最大速度数据并变换所识别的最大速度数据以提供3D矢量方向信息来导出3D矢量方向信息。 计算处理器使用获取的1D MR成像数据集来计算由3D矢量方向信息确定的方向上的血流速度。
    • 18. 发明申请
    • System for Automated Parameter Setting in Cardiac Magnetic Resonance Imaging
    • 心脏磁共振成像自动参数设置系统
    • US20100268066A1
    • 2010-10-21
    • US12721591
    • 2010-03-11
    • Wolfgang RehwaldPeter Weale
    • Wolfgang RehwaldPeter Weale
    • A61B5/055
    • A61B5/055A61B5/7285G01R33/5602G01R33/5676G06F19/00
    • A system automatically calculates optimal protocol parameters for dark-blood (DB) preparation and inversion recovery. The system automatically determines pulse sequence timing parameters for MR imaging with blood related signal suppression. The system comprises an acquisition processor for acquiring data indicating a patient heart rate. A pulse timing processor automatically determines an acquisition time of an image data set readout, relative to a blood signal suppression related magnetization preparation pulse sequence, by calculating the acquisition time in response to inputs including, (a) the acquired patient heart rate, (b) data indicating a type of image contrast of the pulse sequence employed and (c) data indicating whether an anatomical signal suppression related magnetization preparation pulse sequence used has a slice selective, or non-slice selective, data acquisition readout.
    • 系统自动计算黑血(DB)制备和反转恢复的最佳协议参数。 系统通过血液相关信号抑制自动确定MR成像的脉冲序列时序参数。 该系统包括用于获取指示患者心率的数据的采集处理器。 相对于血液信号抑制相关的磁化准备脉冲序列,脉冲定时处理器通过计算响应于包括(a)获得的患者心率(b)的输入的获取时间来自动确定图像数据组读出的获取时间 )数据,其指示使用的脉冲序列的图像对比度的类型;以及(c)指示所使用的解剖信号抑制相关磁化准备脉冲序列是否具有切片选择性或非切片选择性数据采集读出的数据。