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    • 4. 发明授权
    • Java virtual machine having integrated transaction management system
    • Java虚拟机具有集成的事务管理系统
    • US08606877B2
    • 2013-12-10
    • US12433742
    • 2009-04-30
    • Otto LindJonathon C. PileRamiro SarmientoDaniel J. SifterDavid StoneXiguang ZangMark Phillips
    • Otto LindJonathon C. PileRamiro SarmientoDaniel J. SifterDavid StoneXiguang ZangMark Phillips
    • G06F15/16
    • G06F9/466
    • A computing system comprises a plurality of computing nodes and is configured such that each computing node includes a processor configured to execute JAVA computer program instructions. The computing nodes cooperate to form a cluster, wherein the JAVA computer program instructions being executed by the plurality of computing nodes collectively accomplish a fully transactional application. Each application data object partition is associated with one of the computing nodes as a primary node for application data objects of that partition and further associated with at least one of the computing nodes as at least one secondary node for application data objects of that partition. Messages relative to an application data object are provided to the primary node for the application data object as well as to the at least one secondary node for that application data object, for updates. The particular application object is readable at any of the primary node and the at least one secondary node for that particular application data object.
    • 计算系统包括多个计算节点,并且被配置为使得每个计算节点包括被配置为执行JAVA计算机程序指令的处理器。 计算节点协作形成一个集群,其中由多个计算节点执行的JAVA计算机程序指令集体地完成一个完全事务应用。 每个应用数据对象分区与其中一个计算节点相关联,作为该分区的应用数据对象的主节点,并进一步与至少一个计算节点相关联,作为该分区的应用数据对象的至少一个辅助节点。 相对于应用数据对象的消息被提供给用于应用数据对象的主节点以及用于该应用数据对象的至少一个次节点用于更新。 特定应用对象在该特定应用数据对象的主节点和至少一个次节点的任何一个上是可读的。
    • 6. 发明授权
    • Correction of geometric distortion in MRI phase and phase difference
images
    • MRI相位和相位差图像中几何失真的校正
    • US5498963A
    • 1996-03-12
    • US286365
    • 1994-08-05
    • Erika SchneiderXiguang ZangMichael R. Hartley
    • Erika SchneiderXiguang ZangMichael R. Hartley
    • G01R33/565G01V3/14
    • G01R33/56518
    • In an MRI system NMR data is acquired and an image is reconstructed based on the net phase or phase difference of spins at locations in the imaged object. The phase or phase difference image is corrected for errors caused by non-linearities in one or more of the gradient fields. The phase or phase difference image values are weighted with spin signal magnitude image values and their locations warped to reflect gradient field non-linearity. The warped values are remapped to the image pixel locations and converted back to phase values by dividing by an average spin signal magnitude. In this manner geometric distortion caused by non-uniform magnetic field gradients are corrected without loss of quantitative phase or phase difference information.
    • 在MRI系统中,获取NMR数据,并且基于成像对象中位置处的自旋的净相位或相位差重建图像。 针对由一个或多个梯度场中的非线性引起的误差来校正相位差或相位差图像。 相位或相位差图像值用自旋信号幅度图像值加权,并且它们的位置翘曲以反映梯度场非线性。 翘曲值被重新映射到图像像素位置,并通过除以平均自旋信号幅度而转换回相位值。 以这种方式,校正由不均匀磁场梯度引起的几何失真,而不损失定量相位或相位差信息。