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    • 5. 发明申请
    • Determination of a Magnetic Resonance System Activation Sequence
    • 确定磁共振系统激活序列
    • US20130253876A1
    • 2013-09-26
    • US13847373
    • 2013-03-19
    • Josef PfeufferRainer Schneider
    • Josef PfeufferRainer Schneider
    • G01R33/44G01R33/38
    • G01R33/443G01R33/38G01R33/4833G01R33/4836G01R33/5612G01R33/56563
    • A method and a control sequence determination device for the determination of a magnetic resonance system activation sequence including at least one high-frequency pulse sequence to be transmitted by a magnetic resonance system are provided. A current B0 map and optionally a target magnetization are acquired. In addition, a k-space trajectory type is determined. An error density is calculated in a k-space based on the current B0 map and optionally based on the target magnetization using an analytic function. This analytic function defines an error density in the k-space as a function of the current B0 map and optionally the target magnetization. Taking account of the error density in the k-space, a k-space trajectory of the specified k-space trajectory type is determined. The high-frequency pulse sequence is determined for the k-space trajectory in an HF pulse optimization process.
    • 提供一种用于确定包括要由磁共振系统传送的至少一个高频脉冲序列的磁共振系统激活序列的方法和控制序列确定装置。 获取当前的B0图和可选的目标磁化。 另外,确定k空间轨迹类型。 基于当前B0图在k空间中计算误差密度,并且可选地基于使用分析函数的目标磁化。 该分析函数定义了k空间中的误差密度,作为当前B0映射和可选的目标磁化的函数。 考虑到k空间中的误差密度,确定了指定的k空间轨迹类型的k空间轨迹。 在HF脉冲优化过程中为k空间轨迹确定高频脉冲序列。
    • 6. 发明授权
    • Perfusion adaptive blood proton spin tagged MR image data processing system
    • 灌注自适应血液质子自旋标记MR图像数据处理系统
    • US08436610B2
    • 2013-05-07
    • US12604273
    • 2009-10-22
    • Josef Pfeuffer
    • Josef Pfeuffer
    • G01R33/56366G01R33/563G01R33/5601G01R33/5635A61B5/055
    • G01R33/56366G01R33/4833G01R33/4835G01R33/5601
    • A system adaptively processes MR image data to accommodate variation in perfusion time of a vessel fluid. An MR image data acquisition device initiates acquisition of a first image set comprising multiple different individual images having a set of corresponding different physical slice locations through a patient anatomical volume and being acquired at a corresponding first set of times and in a first order relative to a time of blood tagging of a patient. The MR image data acquisition device initiates acquisition of a second image set comprising multiple different individual images having the set of corresponding different physical slice locations through the patient anatomical volume and being acquired at substantially the corresponding first set of times and in a second order, different to the first order, relative to the time of blood tagging of the patient. At least one computer combines and averages image data representing the same corresponding image slice in both the first and second image sets and acquired at different times relative to the time of blood tagging of the patient and sends the combined and averaged image data representing the same corresponding image slice to a destination.
    • 系统自适应地处理MR图像数据以适应血管流体的灌注时间的变化。 MR图像数据获取装置通过患者解剖体积开始获取包括具有一组对应的不同物理切片位置的多个不同单独图像的第一图像集,并且以对应的第一组和第一组相对于 血液标签的时间。 MR图像数据获取装置启动通过患者解剖体积开始包括具有对应不同物理切片位置的集合的多个不同单独图像的第二图像集,并且基本上在相应的第一组和第二阶段获取不同的 相对于患者的血液标记时间的第一顺序。 至少一台计算机在第一和第二图像集合中组合并平均表示相同对应图像切片的图像数据,并且相对于患者的血液标记时间在不同时间获取,并发送表示相同对应的组合和平均的图像数据 图像切片到目的地。
    • 9. 发明授权
    • Method and magnetic resonance apparatus to acquire temporally successive image data sets
    • 用于获取时间上连续的图像数据集的方法和磁共振装置
    • US08086003B2
    • 2011-12-27
    • US12179694
    • 2008-07-25
    • Josef Pfeuffer
    • Josef Pfeuffer
    • G06K9/00G01V3/00
    • G01R33/561G01R33/4806G01R33/4824G01R33/56308G01R33/56509
    • In a method and magnetic resonance apparatus for acquisition and processing of a series of temporally successive image data sets of the series of temporally successive image data sets is acquired by magnetic resonance technology, wherein k-space image data corresponding to each image data set are acquired, and for each image data set in the series, a determination is made, in at least one first part of that image data set, of a measure that characterizes a global image intensity value of that image data set. At least one second part of the image data sets is corrected using the determined measures and/or the determined measures are used in an evaluation of at least one third part of the image data sets. A temporal change of the global image intensity value in the series of temporally successive image data sets is compensated or taken into account in this manner.
    • 在用于获取和处理一系列时间上连续的图像数据集的一系列时间连续的图像数据集的方法和磁共振装置中,通过磁共振技术获得,其中获取对应于每个图像数据集的k空间图像数据 并且对于该系列中的每个图像数据集,在该图像数据集的至少一个第一部分中确定表征该图像数据集的全局图像强度值的度量的度量。 使用所确定的测量来校正图像数据集的至少一个第二部分,和/或所确定的测量用于至少第三部分图像数据集的评估。 以这种方式补偿或考虑了一系列时间连续的图像数据集中的全局图像强度值的时间变化。