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    • 3. 发明申请
    • ENHANCED FAT SATURATION IN MYOCARDIAL INFARCTION MRI
    • 心肌梗死MRI增强脂肪饱和度
    • US20140062474A1
    • 2014-03-06
    • US13598435
    • 2012-08-29
    • Xiangzhi ZHOUMitsue MIYAZAKI
    • Xiangzhi ZHOUMitsue MIYAZAKI
    • G01R33/56G01R33/34
    • A61B5/055A61B5/0044G01R33/5607
    • MRI k-space data is acquired for a patient ROI during data acquisition sequences including a nuclear magnetic resonance (NMR) signal readout period using a late gadolinium enhanced (LGE) data acquisition sequence including at least one fat-specific RF NMR magnetization inversion pulse imposed (a) after a water-specific RF NMR magnetization inversion pulse timed to cause a substantial null in NMR magnetization of normal tissue protons near a center of the readout period and (b) before the readout period center, which fat-specific inversion pulse is also timed to cause a substantial null in NMR magnetization of fat tissue protons near the readout period center. The acquired MR image data is reconstructed into a contrast enhanced LGE image of tissues within the ROI but having substantially suppressed normal and fat components therein.
    • 在包括使用晚期钆增强(LGE)数据采集序列的核磁共振(NMR)信号读出周期的数据采集序列的数据采集序列期间获取MRI k空间数据,其包括至少一个脂肪特异性RF NMR磁化反转脉冲 (a)在水特异性RF核磁共振磁化反转脉冲之后,定时地使读出周期中心附近的正常组织质子的NMR磁化大致为零,和(b)在读出周期中心之前,脂肪特异性反转脉冲 也定时导致在读出周期中心附近的脂肪组织质子的NMR磁化中基本上为零。 所获取的MR图像数据被重建成ROI内的组织的对比度增强的LGE图像,但是基本上抑制了其中的正常和脂肪成分。
    • 4. 发明授权
    • MRI non-contrast time-slip angiography using variably positioned cine sub-sequence
    • MRI非造影时间流行血管造影使用可变位置的电影子序列
    • US08581582B2
    • 2013-11-12
    • US12946549
    • 2010-11-15
    • Mitsue Miyazaki
    • Mitsue Miyazaki
    • G01R33/48
    • G01R33/5635A61B5/0555G01R33/4833G01R33/543G01R33/5601G01R33/5608G01R33/56366G06F19/00
    • A magnetic resonance imaging (MRI) system using an MRI gantry and controlling computer system includes at least one programmed computer configured to effect a cardiac-triggered time-SLIP (spatial labeling inversion pulse) MRI data acquisition sequence for imaging blood perfusion in imaged patient tissue and employing therewithin an MRI cine sub-sequence. The sub-sequence is positioned in the time domain to encompass at least part of a predetermined (e.g., diastolic) cardiac time interval of the patient. Processing acquired data from the time-SLIP data acquisition sequence generates a sequence of MRI cine frame images having respectively associated different effective BBTI (black blood time to inversion) time intervals. Identifying one of the MRI cine frame images as acceptable, thereby effectively also determines an appropriate BBTI time interval for the patient. The system then outputs a time-SLIP image based on the determined appropriate BBTI time interval to at least one of (a) a display, (b) a remote system or (c) a non-transitory storage medium.
    • 使用MRI台架和控制计算机系统的磁共振成像(MRI)系统包括至少一个编程计算机,其被配置为实现用于成像的患者组织中的血液灌注成像的心脏触发时间SLIP(空间标记反转脉冲)MRI数据采集序列 并在其中使用MRI电影子序列。 子序列位于时域中以包含患者的预定(例如舒张期)心脏时间间​​隔的至少一部分。 从时间SLIP数据获取序列处理获取的数据产生具有分别相关联的不同有效BBTI(黑血时间到反转)时间间隔的MRI电影帧图像序列。 将MRI电影帧图像中的一个识别为可接受的,从而有效地还确定了患者适当的BBTI时间间隔。 系统然后基于所确定的适当BBTI时间间隔将(a)显示器,(b)远程系统或(c)非暂时性存储介质中的至少一个输出时间SLIP图像。
    • 5. 发明申请
    • APPARATUS AND METHOD FOR MAGNETIC RESONANCE IMAGING
    • 用于磁共振成像的装置和方法
    • US20130285655A1
    • 2013-10-31
    • US13677716
    • 2012-11-15
    • Mitsue MIYAZAKIHidenori TAKESHIMATsutomu HOSHINOSatoshi SUGIURA
    • Mitsue MIYAZAKIHidenori TAKESHIMATsutomu HOSHINOSatoshi SUGIURA
    • G01R33/54G01R33/34
    • G01R33/543G01R33/34G01R33/5608G01R33/5611G01R33/5614G01R33/56325G01R33/56341G01R33/5673
    • A magnetic resonance imaging apparatus includes: a sequence controlling unit that, by controlling an execution of a pulse sequence, acquires magnetic resonance (MR) signals corresponding to a plurality of channels in the pulse sequence executed as a series, the MR signals being configured to be arranged into a first region of a k-space at first intervals and into a second region larger than the first region at second intervals larger than the first intervals; an arranging unit that arranges the MR signals corresponding to the channels into the k-space as k-space data; and an image generating unit that generates first-interval k-space data corresponding to the channels based on the second-interval k-space data acquired by executing the pulse sequence and generates a magnetic resonance image based on the generated first-interval k-space data, the first-interval k-space data acquired by executing the pulse sequence, and sensitivity distributions corresponding to the channels.
    • 磁共振成像装置包括:序列控制单元,其通过控制脉冲序列的执行获取与以串行执行的脉冲序列中的多个通道对应的磁共振(MR)信号,MR信号被配置为 以第一间隔被布置到k空间的第一区域中,并且以大于第一间隔的第二间隔进入比第一区域大的第二区域; 布置单元,将与所述通道相对应的MR信号布置为k空间数据; 以及图像生成单元,其基于通过执行所述脉冲序列获取的所述第二间隔k空间数据生成与所述通道对应的第一间隔k空间数据,并且基于所生成的第一间隔k空间生成磁共振图像 数据,通过执行脉冲序列获取的第一间隔k空间数据,以及对应于信道的灵敏度分布。
    • 6. 发明申请
    • Velocity measurement of MR-Imaged fluid flows
    • MR成像流体流速测量
    • US20120095326A1
    • 2012-04-19
    • US12923894
    • 2010-10-13
    • Mitsue Miyazaki
    • Mitsue Miyazaki
    • A61B5/055
    • A61B5/055A61B5/0263G01R33/4838G01R33/56308G01R33/5635
    • Velocity of MR-imaged fluid flows is measured. Data representing a measure of distance traveled by flowing fluid appearing in at least two MR images of a subject's tissue taken at different respective imaging times is generated. Data representing at least one fluid velocity measurement of the flowing fluid is generated by calculating at least one instance of distance traveled by the fluid divided by elapsed time during travel based on different respective imaging times. Data representing at least one fluid velocity measurement is then output to at least one of: (a) a display screen, (b) a non-transitory data storage medium, and (c) a remotely located site.
    • 测量MR成像流体流速。 产生表示通过在不同的各个成像时间拍摄的被摄体组织的至少两个MR图像中出现的流体流动所行进的距离的量度的数据。 表示流体流体的至少一个流体速度测量的数据是通过基于不同的各自的成像时间计算由流体划分的行驶距离除以行驶中的经过时间的至少一个情况而产生的。 然后将代表至少一个流体速度测量的数据输出到以下中的至少一个:(a)显示屏,(b)非瞬时数据存储介质和(c)位于远处的位置。
    • 8. 发明申请
    • MAGNETIC RESONANCE IMAGING APPARATUS
    • 磁共振成像装置
    • US20110148413A1
    • 2011-06-23
    • US12971517
    • 2010-12-17
    • Mitsue MIYAZAKISatoshi Sugiura
    • Mitsue MIYAZAKISatoshi Sugiura
    • G01R33/44
    • G01R33/5635G01R33/482G01R33/56316
    • A magnetic resonance imaging apparatus according to an embodiment includes a data gathering unit and an image generating unit, the data gathering unit gathers magnetic resonance data in a non-contrast manner by applying a first readout gradient pulse having a zero-order moment of 0 and a second readout gradient pulse having a zero-order moment of 0 and a first-order moment of a value different from a value of a first-order moment of the first readout gradient pulse to a region of interest including a fluid in motion, and the image generating unit periodically arranges first magnetic resonance data read out with the first readout gradient pulse and second magnetic resonance data read out with the second readout gradient pulse in at least one of a phase encoding direction and a slice encoding direction in a k-space to generate k-space data and reconstructs the k-space data to generate an image in which a fluid image and a static part image surrounding the fluid are spatially separated from each other.
    • 根据实施例的磁共振成像装置包括数据采集单元和图像生成单元,数据采集单元以非对比度方式收集磁共振数据,通过应用零阶矩为0的第一读出梯度脉冲和 具有零阶矩为0的第二读出梯度脉冲和不同于第一读出梯度脉冲的一阶矩的值与包括运动中的流体的感兴趣区域的值的一阶矩,以及 图像生成单元将第一读出梯度脉冲读出的第一磁共振数据和第二读出梯度脉冲读出的第二磁共振数据周期性地排列在k空间中的相位编码方向和切片编码方向中的至少一个 以产生k空间数据并重建k空间数据以生成其中流体图像和围绕流体的静态部分图像在空间上分离的图像fr 彼此之间。
    • 9. 发明申请
    • MRI NON-CONTRAST TIME-SLIP ANGIOGRAPHY USING VARIABLY POSITIONED CINE SUB-SEQUENCE
    • MRI使用可变定位电影子序列的非对照时间滑移图
    • US20110080170A1
    • 2011-04-07
    • US12946549
    • 2010-11-15
    • Mitsue MIYAZAKI
    • Mitsue MIYAZAKI
    • G01R33/48
    • G01R33/5635A61B5/0555G01R33/4833G01R33/543G01R33/5601G01R33/5608G01R33/56366G06F19/00
    • A magnetic resonance imaging (MRI) system using an MRI gantry and controlling computer system includes at least one programmed computer configured to effect a cardiac-triggered time-SLIP (spatial labeling inversion pulse) MRI data acquisition sequence for imaging blood perfusion in imaged patient tissue and employing therewithin an MRI cine sub-sequence. The sub-sequence is positioned in the time domain to encompass at least part of a predetermined (e.g., diastolic) cardiac time interval of the patient. Processing acquired data from the time-SLIP data acquisition sequence generates a sequence of MRI cine frame images having respectively associated different effective BBTI (black blood time to inversion) time intervals. Identifying one of the MRI cine frame images as acceptable, thereby effectively also determines an appropriate BBTI time interval for the patient. The system then outputs a time-SLIP image based on the determined appropriate BBTI time interval to at least one of (a) a display, (b) a remote system or (c) a non-transitory storage medium.
    • 使用MRI台架和控制计算机系统的磁共振成像(MRI)系统包括至少一个编程计算机,其被配置为实现用于成像的患者组织中的血液灌注成像的心脏触发时间SLIP(空间标记反转脉冲)MRI数据采集序列 并在其中使用MRI电影子序列。 子序列位于时域中以包含患者的预定(例如舒张期)心脏时间间​​隔的至少一部分。 从时间SLIP数据获取序列处理获取的数据产生具有分别相关联的不同有效BBTI(黑血时间到反转)时间间隔的MRI电影帧图像序列。 将MRI电影帧图像中的一个识别为可接受的,从而有效地还确定患者适当的BBTI时间间隔。 系统然后基于所确定的适当BBTI时间间隔将(a)显示器,(b)远程系统或(c)非暂时性存储介质中的至少一个输出时间SLIP图像。