首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Small field of view imaging using wavelet encoding with 2 dimensional RF pulses and gradient echo: Phantom results
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Small field of view imaging using wavelet encoding with 2 dimensional RF pulses and gradient echo: Phantom results

机译:使用二维射频脉冲和梯度回波的小波编码进行小视场成像:幻像结果

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Object: The objective of this work is to propose an imaging sequence based upon the wavelet encoding approach to provide MRI images free from folding artifacts, in the small field of view (FOV) regime, such as dynamic magnetic resonance imaging (MRI) studies. Materials and methods: The method consists of using a 2D spatially selective RF excitation pulse inserted into a gradient- echo pulse sequence to excite spins within a determined plane where wavelet encoding is achieved in one direction and slice selection is performed in the second direction. Wavelet encoding allows for spatially localized excitation and consequently restricts the spins excited within a reduced FOV. It consists of varying, according to a predetermined scheme, the width and position of the profile of the so-called fast RF pulse of the 2D RF excitation pulse, to obey wavelet encoding translation and dilation conditions. This sequence is implemented on a 3 Tesla whole body Siemens scanner. Results: Compared to Fourier encoding, the proposed technique tested on phantoms with different shapes and structures, is able to provide gradient-echo reduced FOV images free from aliased signals. Conclusion: Wavelet encoding is suitable for small FOV imaging in dynamic MRI studies.
机译:目的:这项工作的目的是提出一种基于小波编码方法的成像序列,以在小视场(FOV)情况下提供无折叠伪影的MRI图像,例如动态磁共振成像(MRI)研究。材料和方法:该方法包括使用插入到梯度回波脉冲序列中的2D空间选择性RF激励脉冲来激发确定平面内的自旋,在该平面中在一个方向上实现小波编码,在第二方向上执行切片选择。小波编码允许在空间上进行局部激发,因此将激发的自旋限制在降低的FOV范围内。它包括根据预定方案改变2D RF激励脉冲的所谓快速RF脉冲的轮廓的宽度和位置,以服从小波编码转换和扩展条件。此序列在3特斯拉全身Siemens扫描仪上执行。结果:与傅立叶编码相比,该提议的技术在具有不同形状和结构的体模上进行了测试,能够提供没有混叠信号的梯度回波减小的FOV图像。结论:小波编码适合动态MRI研究中的小FOV成像。

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