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Method for the prevention of registration artifacts due to motion in magnetic resonance images

机译:防止由于磁共振图像中的运动引起的配准伪影的方法

摘要

A magnetic resonance system employs a sequence of radio frequency pulses and magnetic field gradients to generate a flow- compensated image of a selected portion of a sample. Flow-compensation is performed with an oscillating readout gradient waveform which is comprised of two components. The first component is a constant amplitude gradient waveform whose amplitude is determined by the desired field-of- view and the bandwidth of the imaging system. The second component is an oscillating waveform whose amplitude, frequency and phase are chosen to obtain the desired degree of flow-compensation. The frequency of the oscillating waveform is typically chosen to match the sampling frequency of the imaging system. In effect, each acquired data point is preceded by the application of a bi-polar magnetic field gradient pulse which causes a phase shift in the acquired signal which is proportional to nuclear spin velocity. The amplitude is typically chosen to cause an incremental phase shift which when repeatedly added to the acquired MR response signal at the sampling rate causes a frequency modulation. This frequency modulation, in turn, induces a spatial displacement of signal intensity in the readout dimension which corresponds to the displacement of spin magnetization during the interval between the phase-encoding and frequency-encoding.
机译:磁共振系统采用一系列射频脉冲和磁场梯度来生成样本选定部分的流量补偿图像。使用包含两个分量的振荡读数梯度波形执行流量补偿。第一个分量是恒定振幅梯度波形,其振幅由所需的视场和成像系统的带宽确定。第二个分量是一个振荡波形,其振幅,频率和相位经过选择以获得所需的流量补偿程度。通常选择振荡波形的频率以匹配成像系统的采样频率。实际上,在每个采集的数据点之前都施加了一个双极性磁场梯度脉冲,该脉冲会在采集的信号中引起与核自旋速度成比例的相移。通常选择幅度以引起增量的相移,该相移在以采样速率重复添加到所采集的MR响应信号时引起频率调制。该频率调制继而在读出维度上引起信号强度的空间位移,该空间位移对应于在相位编码和频率编码之间的间隔期间的自旋磁化的位移。

著录项

  • 公开/公告号US5541512A

    专利类型

  • 公开/公告日1996-07-30

    原文格式PDF

  • 申请/专利权人 GENERAL ELECTRIC COMPANY;

    申请/专利号US19940313957

  • 发明设计人 CHARLES L. DUMOULIN;ROBERT D. DARROW;

    申请日1994-09-28

  • 分类号G01V3/00;G01V3/14;

  • 国家 US

  • 入库时间 2022-08-22 03:38:10

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