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    • 1. 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。
    • 2. 发明授权
    • Automatic system for timing in imaging
    • 自动系统定时成像
    • US09207300B2
    • 2015-12-08
    • US13964165
    • 2013-08-12
    • Xiaoming BiSven ZuehlsdorffChristopher GlielmiNing Jin
    • Xiaoming BiSven ZuehlsdorffChristopher GlielmiNing Jin
    • A61B5/055G01R33/54A61B5/00G01R33/563G01R33/567A61B5/0456
    • 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。
    • 3. 发明申请
    • Medical Imaging Guideline Compliance System
    • 医学影像指导合规体系
    • US20130297331A1
    • 2013-11-07
    • US13756928
    • 2013-02-01
    • Sven ZuehlsdorffChristopher GlielmiNing JinXiaoming BiJens Gühring
    • Sven ZuehlsdorffChristopher GlielmiNing JinXiaoming BiJens Gühring
    • G06Q40/08G06Q50/22
    • G06Q40/08G06F19/328G06Q50/22G16H40/20
    • A system supports medical imaging compliance with guideline and reimbursement requirements using at least one repository and a compliance processor. The at least one repository associates information including, specific reimbursement requirements of a patient insurance company with an imaging protocol compliant with predetermined guidelines for imaging a particular anatomical feature and with a specific type of imaging device and with multiple different steps of the imaging protocol. The compliance processor uses the information in, determining whether a particular imaging protocol for imaging a particular anatomical feature of a particular patient on a particular type of imaging device is compliant with the guidelines and the reimbursement requirements and identifying at least one of, (a) a missing step and (b) an incorrect step, in the particular imaging protocol.
    • 系统使用至少一个存储库和合规处理器来支持符合指南和报销要求的医学成像。 所述至少一个存储库将包括患者保险公司的特定报销要求的信息与符合预定准则的成像协议相关联,所述成像协议用于成像特定解剖特征以及特定类型的成像设备以及成像协议的多个不同步骤。 合规处理器使用信息,确定用于对特定类型的成像装置上的特定患者的特定解剖特征进行成像的特定成像协议是否符合指南和报销要求,并且确定以下中的至少一个:(a) 缺少一个步骤,(b)特定成像协议中的错误步骤。
    • 4. 发明授权
    • MR parallel imaging system reducing imaging time
    • MR并行成像系统缩短成像时间
    • US09335393B2
    • 2016-05-10
    • US13852206
    • 2013-03-28
    • Ning JinDebiao LiQi LiuSven Zuehlsdorff
    • Ning JinDebiao LiQi LiuSven Zuehlsdorff
    • G01V3/00G01R33/54G01R33/56G01R33/561
    • G01R33/54G01R33/5605G01R33/5611
    • An MR imaging system uses multiple RF coils, for reducing image acquisition time, suitable for chemical exchange saturation transfer (CEST) imaging. Multiple RF (Radio Frequency) coils provide CEST imaging preparation in an anatomical volume by providing multiple interleaved RF pulses. The multiple interleaved RF pulses provide substantially increased RF pulse sequence duty cycle in the multiple RF coils relative to a duty cycle provided by a single coil of the multiple RF coils. The multiple RF coils subsequently provide RF excitation pulses in a reduced anatomical volume using k-space undersampling in an accelerated imaging method using the multiple RF coils and enable subsequent acquisition of associated RF echo data for deriving a CEST image.
    • MR成像系统使用多个RF线圈,以减少图像采集时间,适用于化学交换饱和传输(CEST)成像。 多个RF(射频)线圈通过提供多个交错RF脉冲在解剖体积中提供CEST成像准备。 多个交错RF脉冲相对于由多个RF线圈的单个线圈提供的占空比在多个RF线圈中提供基本上增加的RF脉冲序列占空比。 多个RF线圈随后使用使用多个RF线圈的加速成像方法中的k空间欠采样来提供减小的解剖体积的RF激励脉冲,并且使得能够随后获取相关联的RF回波数据以导出CEST图像。
    • 5. 发明申请
    • MR Parallel Imaging System Reducing Imaging Time
    • MR并行成像系统减少成像时间
    • US20140070803A1
    • 2014-03-13
    • US13852206
    • 2013-03-28
    • Ning JinDebiao LiQi LiuSven Zuehlsdorff
    • Ning JinDebiao LiQi LiuSven Zuehlsdorff
    • G01R33/54
    • G01R33/54G01R33/5605G01R33/5611
    • An MR imaging system uses multiple RF coils, for reducing image acquisition time, suitable for chemical exchange saturation transfer (CEST) imaging. Multiple RF (Radio Frequency) coils provide CEST imaging preparation in an anatomical volume by providing multiple interleaved RF pulses. The multiple interleaved RF pulses provide substantially increased RF pulse sequence duty cycle in the multiple RF coils relative to a duty cycle provided by a single coil of the multiple RF coils. The multiple RF coils subsequently provide RF excitation pulses in a reduced anatomical volume using k-space undersampling in an accelerated imaging method using the multiple RF coils and enable subsequent acquisition of associated RF echo data for deriving a CEST image.
    • MR成像系统使用多个RF线圈,以减少图像采集时间,适用于化学交换饱和传输(CEST)成像。 多个RF(射频)线圈通过提供多个交错RF脉冲在解剖体积中提供CEST成像准备。 多个交错RF脉冲相对于由多个RF线圈的单个线圈提供的占空比在多个RF线圈中提供基本上增加的RF脉冲序列占空比。 多个RF线圈随后使用使用多个RF线圈的加速成像方法中的k空间欠采样来提供减小的解剖体积的RF激励脉冲,并且使得能够随后获取相关联的RF回波数据以导出CEST图像。