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Magnetic resonance imaging method using a partial parallel acquisition technique with non-cartesian occupation of k-space

机译:使用部分平行采集技术的非笛卡尔占用k空间的磁共振成像方法

摘要

In a method for magnetic resonance imaging using a partial parallel acquisition technique with a non-Cartesian occupation of k-space, a number of antennas disposed around an imaging volume for reception of magnetic resonance signals and the magnetic resonance signals in the imaging volume are spatially coded by magnetic gradient fields, such that k-space for each antenna is only incompletely occupied with magnetic resonance signals with at least one trajectory proceeding around the origin of k-space. From the reception signals of each antenna, missing sample values of the trajectory that lie on a straight-line segment extending from the origin are determined in k-space according to a weighting with weighting factors from sample values of the trajectory that likewise lie on the straight lines, such that each k-space is completely occupied. A partial image of the imaging area is generated from each completely occupied k-space by means of a Fourier transformation. An image of the imaging volume is generated from the partial images.
机译:在使用具有k空间的非笛卡尔占用的部分并行采集技术的磁共振成像的方法中,围绕成像空间布置的用于在空间上接收磁共振信号和磁共振信号的多个天线在空间上通过磁场梯度场编码,使得每个天线的k空间仅被磁共振信号不完全占据,并且至少一个轨迹围绕k空间的起点行进。从每个天线的接收信号中,根据权重的加权,在k空间中确定位于从原点延伸的直线段上的轨迹的丢失样本值,该加权同样来自于该轨迹的样本值直线,这样每个k空间都被完全占据。借助于傅立叶变换从每个完全占据的k空间中生成成像区域的部分图像。从局部图像生成成像体积的图像。

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