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    • 2. 发明授权
    • Automatic or semi-automatic whole body MR scanning system
    • 自动或半自动全身MR扫描系统
    • US09295406B2
    • 2016-03-29
    • US13288083
    • 2011-11-03
    • Sven ZuehlsdorffChristopher GlielmiXiaoming Bi
    • Sven ZuehlsdorffChristopher GlielmiXiaoming Bi
    • A61B5/055A61B6/00
    • A61B5/055A61B6/5217A61B2503/12A61B2505/00A61B2576/00G06F19/00
    • A system includes an image data processor for automatically processing data representing multiple patient anatomical images acquired in a single imaging scan. The images are acquired by, identifying multiple different anatomical elements in corresponding multiple different anatomical regions and identifying multiple different potentially pathology indicative features associated with the multiple different anatomical elements in response to first predetermined information associating different potentially pathology indicative features with corresponding different anatomical elements. The image data processor determines multiple different image acquisition methods for use in imaging the multiple different potentially pathology indicative features in response to second predetermined information associating different image acquisition methods with corresponding identified different pathology indicative features. An output processor collates images for output.
    • 系统包括用于自动处理表示在单个成像扫描中获取的多个患者解剖图像的数据的图像数据处理器。 通过以下方式来获取图像:通过在相应的多个不同解剖区域中识别多个不同的解剖元件并且响应于将不同的潜在病理学指示特征与对应的不同解剖元件相关联的第一预定信息来识别与多个不同解剖元件相关联的多个不同的潜在病理指示特征。 图像数据处理器响应于将不同的图像采集方法与相应的识别的不同病理学指示特征相关联的第二预定信息,确定用于成像多个不同潜在病理学指示特征的多个不同图像采集方法。 输出处理器整理图像以进行输出。
    • 6. 发明申请
    • Enhanced Contrast MR System Accommodating Vessel Dynamic Fluid Flow
    • 增强对比MR系统容纳动态流体流动
    • US20100014735A1
    • 2010-01-21
    • US12436917
    • 2009-05-07
    • Xiaoming BiPeter SchmittRenate JerecicPeter WealeSven Zuehlsdorff
    • Xiaoming BiPeter SchmittRenate JerecicPeter WealeSven Zuehlsdorff
    • G06K9/00
    • G01R33/5635G01R33/4835G01R33/5601G01R33/5607
    • A system enhances MR imaging contrast between vessels containing dynamically flowing blood and static tissue using an MR imaging system. The MR imaging system, in response to a heart rate synchronization signal, acquires an anatomical preparation data set representing a spatially non-localized preparation 3D volume in response to a first magnetization preparation pulse sequence. The MR imaging system acquires a spatially localized anatomical imaging data set representing a second imaging volume. The MR imaging system subtracts slice specific MR imaging data of the spatially localized anatomical imaging data set from spatially and temporally corresponding slice specific imaging data of the anatomical preparation data set to derive blood flow indicative imaging data. The temporally corresponding slice specific imaging data comprises data acquired at a substantially corresponding cycle point within a heart beat cycle determined in response to said heart rate synchronization signal. The MR imaging system iteratively repeats the subtraction step for multiple adjacent slices individually comprising a spatially localized anatomical imaging data set to provide a three-dimensional imaging data set.
    • 系统通过使用MR成像系统来增强含有动态流动的血液和静脉组织的血管之间的MR成像对比度。 MR成像系统响应于心率同步信号,响应于第一磁化准备脉冲序列获取表示空间非局部化准备3D体积的解剖准备数据集。 MR成像系统获取表示第二成像体积的空间局部解剖成像数据集。 MR成像系统从解剖准备数据集的空间和时间上对应的切片特异性成像数据中减去空间局部解剖成像数据集的切片特定MR成像数据,以导出血流指示成像数据。 时间上对应的切片特定成像数据包括在响应于所述心率同步信号确定的心跳周期内的基本对应的周期点获取的数据。 MR成像系统迭代重复多个相邻切片的减法步骤,该相邻切片单独地包括空间定位的解剖学成像数据集以提供三维成像数据集。
    • 7. 发明申请
    • Automatic System for Timing In Imaging
    • 自动成像系统
    • US20140121496A1
    • 2014-05-01
    • US13964165
    • 2013-08-12
    • Xiaoming BiSven ZuehlsdorffChristopher GlielmiNing Jin
    • Xiaoming BiSven ZuehlsdorffChristopher GlielmiNing Jin
    • G01R33/54A61B5/00
    • G01R33/543A61B5/0044A61B5/0456A61B5/055A61B5/7292G01R33/56325G01R33/5673
    • An imaging system automatically determines a cardiac timing parameter for acquiring a cardiac image in a heart phase. An interface receives data identifying a heart image orientation for image acquisition. A repository of data associates, for acquisition of an image in a particular heart phase, different image orientations with corresponding different data items identifying respective corresponding particular acquisition points within an individual heart cycle relative to a start point of the heart cycle. An acquisition timing processor determines from the repository of data, a particular acquisition point within an individual heart cycle relative to the start point of the heart cycle, in response to the received data identifying the heart image orientation and uses the determined particular acquisition point to provide a synchronization signal for triggering acquisition of an image at the particular heart phase.
    • 成像系统自动确定用于获取心脏相位中的心脏图像的心脏定时参数。 接口接收识别用于图像采集的心脏图像取向的数据。 用于在特定心脏相位中获取图像的数据关联库将不同的图像取向与相应的不同数据项相对应,所述对应的不同数据项标识相对于心脏周期的起始点的单个心脏周期内的相应的特定采集点。 响应于接收到的识别心脏图像取向的数据,采集定时处理器从存储库中确定相对于心脏周期的起始点的单个心脏周期内的特定采集点,并使用确定的特定采集点来提供 用于触发在特定心脏相位处获取图像的同步信号。