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    • 1. 发明授权
    • PET-MRI convergence system
    • PET-MRI融合系统
    • US08816686B2
    • 2014-08-26
    • US13224866
    • 2011-09-02
    • HyunWook ParkMyungSung Song
    • HyunWook ParkMyungSung Song
    • G01V3/00
    • A61B6/037A61B5/0035A61B5/055A61B6/0457A61B6/4417
    • A positron emission tomography (PET)-magnetic resonance imaging (MRI) convergence system. In one aspect, the invention may be a PET-MRI convergence system including: a cylindrical magnet bore which includes an outer wall and an inner wall; a gradient magnet which is disposed adjacent to the inner wall of the magnet bore; a MRI RF coil which is disposed adjacent to the inner wall of the gradient magnet, emits an RF pulse signal and detects MRI data corresponding to the RF pulse signal; and a PET detector which is spaced apart from the MRI RF coil and is disposed adjacent to the inner wall of the gradient magnet, and detects PET data.
    • 正电子发射断层扫描(PET) - 磁共振成像(MRI)收敛系统。 一方面,本发明可以是PET-MRI收敛系统,其包括:包括外壁和内壁的圆柱形磁体孔; 倾斜磁体,其设置成与磁体孔的内壁相邻; 与梯度磁体的内壁相邻设置的MRI RF线圈发射RF脉冲信号并检测对应于RF脉冲信号的MRI数据; 以及PET检测器,其与MRI RF线圈间隔开并且邻近梯度磁体的内壁设置,并且检测PET数据。
    • 2. 发明授权
    • Distortion measuring method
    • 失真测量方法
    • US08681869B2
    • 2014-03-25
    • US12704255
    • 2010-02-11
    • HyunWook ParkJeehong Lee
    • HyunWook ParkJeehong Lee
    • H04N7/12
    • H04N5/145
    • A method for measuring distortion is provided. In one embodiment, the method for measuring distortion of a current block, used to estimate motion by estimating high-frequency and low-frequency components of the current block, comprises: calculating the sum of distortion values of the high-frequency component of the current block; calculating the sum of first distortion values of the low-frequency component of the current block; calculating a second distortion value of the low-frequency component of the current block; and adding the sum of the distortion values of the high-frequency component and the second distortion value of the low-frequency component of the current block.
    • 提供了一种用于测量失真的方法。 在一个实施例中,用于通过估计当前块的高频和低频分量来估计运动的用于测量当前块的失真的方法包括:计算当前块的高频分量的失真值之和 块; 计算当前块的低频分量的第一失真值的和; 计算当前块的低频分量的第二失真值; 并加上当前块的低频分量的高频分量和第二失真值的失真值之和。
    • 5. 发明授权
    • Imaging and graphics processing system
    • 成像和图形处理系统
    • US5467459A
    • 1995-11-14
    • US101366
    • 1993-08-02
    • Thomas AlexanderYongmin KimHyunwook ParkKil-Su EoJing-Ming Jong
    • Thomas AlexanderYongmin KimHyunwook ParkKil-Su EoJing-Ming Jong
    • G06F12/02G06F12/00G06F12/06G06F12/08G06F15/80G06T1/20G06T1/60G06T15/00G06F12/04G06F13/00
    • G06T1/20G06F12/0864G06F15/8015G06T15/005G06F12/0875
    • The present invention provides a unified image and graphics processing system that provides both image and graphics processing at high speeds. The system includes a parallel vector processing unit, a graphics subsystem, a shared memory and a set of high-speed data buses for connecting all of the other components. Generally, the parallel vector processing unit includes a series of vector processors. Each processor includes a vector address generator for efficient generation of memory addresses for regular address sequences. In order to synchronize and control the vector processors' accesses to shared memory, the parallel vector processing unit includes shared memory access logic. The logic is incorporated into each vector processor. The graphics subsystem includes a series of polygon processors in a pipelined configuration. Each processor is connected in the pipeline by a first-in-first-out (FIFO) buffer for passing data results. Additionally, each polygon processor is connected to a local shared memory in which program instructions and data are stored. The graphics subsystem also includes a device addressing mechanism for identifying a destination device using a tagged address. The shared memory, the parallel vector processor and the graphics subsystem also incorporate an abbreviated addressing scheme, which reduces the amount of information required to request sequential addresses from the shared memory.
    • 本发明提供了一种统一的图像和图形处理系统,其以高速度提供图像和图形处理。 该系统包括并行向量处理单元,图形子系统,共享存储器和用于连接所有其它组件的一组高速数据总线。 通常,并行向量处理单元包括一系列向量处理器。 每个处理器包括一个矢量地址发生器,用于有效地生成常规地址序列的存储器地址 为了同步和控制向量处理器对共享存储器的访问,并行向量处理单元包括共享存储器访问逻辑。 逻辑被并入每个向量处理器。 图形子系统包括以流水线配置的一系列多边形处理器。 每个处理器通过先进先出(FIFO)缓冲器在流水线中连接,用于传递数据结果。 此外,每个多边形处理器连接到存储程序指令和数据的本地共享存储器。 图形子系统还包括用于使用标记地址识别目的地设备的设备寻址机制。 共享存储器,并行向量处理器和图形子系统还包括缩写寻址方案,其减少了从共享存储器请求顺序地址所需的信息量。
    • 9. 发明申请
    • DISTORTION MEASURING METHOD
    • 失真测量方法
    • US20110080484A1
    • 2011-04-07
    • US12704255
    • 2010-02-11
    • HyunWook ParkJeehong Lee
    • HyunWook ParkJeehong Lee
    • H04N17/00
    • H04N5/145
    • A method for measuring distortion is provided. In one embodiment, the method for measuring distortion of a current block, used to estimate motion by estimating high-frequency and low-frequency components of the current block, comprises: calculating the sum of distortion values of the high-frequency component of the current block; calculating the sum of first distortion values of the low-frequency component of the current block; calculating a second distortion value of the low-frequency component of the current block; and adding the sum of the distortion values of the high-frequency component and the second distortion value of the low-frequency component of the current block.
    • 提供了一种用于测量失真的方法。 在一个实施例中,用于通过估计当前块的高频和低频分量来估计运动的用于测量当前块的失真的方法包括:计算当前块的高频分量的失真值之和 块; 计算当前块的低频分量的第一失真值的和; 计算当前块的低频分量的第二失真值; 并加上当前块的低频分量的高频分量和第二失真值的失真值之和。