首页> 外文会议>International Symposium on Visual Computing;ISVC 2008 >A Novel Acceleration Coding/Reconstruction Algorithm for Magnetic Resonance Imaging in Presence of Static Magnetic Field In-Homogeneities
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A Novel Acceleration Coding/Reconstruction Algorithm for Magnetic Resonance Imaging in Presence of Static Magnetic Field In-Homogeneities

机译:存在非均质静磁场的磁共振成像新的加速编码/重建算法

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In Magnetic Resonance Imaging (MRI), magnetic field spatial variations are used to spatially codify the signal. The presence of static magnetic field in-homogeneities introduces distortions and artefacts in the images. To reduce these effects, an innovative coding/reconstruction algorithm for MRI, based on the assignment of different time varying frequencies (accelerations) to different spatial positions, is presented. The technique is used both for coding and decoding the signal. Numerical simulations of the ID case are reported and compared with conventional MRI results to demonstrate its applicability and efficacy. The adoption of the proposed algorithm could reduce the costs of magnet construction and shimming; allow the construction of more accessible magnets; increase the Field of View (FOV) of existing scanners; reduce chemical shift and magnetic susceptibility effects. It can be considered to be a revolutionary approach to Magnetic Resonance Image acquisition/reconstruction.
机译:在磁共振成像(MRI)中,磁场空间变化用于空间编码信号。静磁场不均匀的存在会在图像中引入变形和伪影。为了减少这些影响,提出了一种创新的MRI编码/重建算法,该算法基于将不同的时变频率(加速度)分配给不同的空间位置。该技术用于编码和解码信号。报告了ID病例的数值模拟,并将其与常规MRI结果进行比较,以证明其适用性和有效性。所提算法的采用可以降低磁铁制造和匀场的成本;允许构造更多易接近的磁铁;增加现有扫描仪的视场(FOV);减少化学位移和磁化率的影响。可以认为这是磁共振图像采集/重建的革命性方法。

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