首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Alias subtraction more efficient than conventional zero-padding in the Fourier-based calculation of the susceptibility induced perturbation of the magnetic field in MR
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Alias subtraction more efficient than conventional zero-padding in the Fourier-based calculation of the susceptibility induced perturbation of the magnetic field in MR

机译:在基于MR的磁化率感应磁场扰动的傅里叶计算中,别名减法比常规零填充更有效

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Forward calculation of the susceptibility induced field shift by Fourier-based procedures requires spatial zero-padding to prevent aliasing artifacts (periodic wrap-around). Padding with a factor of two gives accurate results, however, halves the maximal attainable resolution, and slows down the calculation, which may hamper the feasibility of real-time calculations. Herein is proposed to first perform the calculation at the original resolutiona-allowing aliasinga-and to remove aliasing with an additional convolution in a lower resolution, to alleviate these restrictions regarding memory size and calculation speed, a procedure we termed "virtual" zero-padding. Virtual zero-padding was numerically and experimentally tested and validated with conventional zero-padding and the analytical solution (in the case of spheres) on several phantoms. A demonstration of the increased efficiency is given by implementing virtual zero-padding in a dynamic calculation procedure. The improved efficiency is expected to be relevant regarding the ongoing increase in spatial and temporal resolution in ultra-high-field MRI. Procedures are presented for circular convolution using the discrete Green's function and k-space filtering using the continuous Green's function. Magn Reson Med, 2012.
机译:通过基于傅立叶的过程对磁化率引起的场移进行前向计算需要空间零填充,以防止混叠伪像(周期性环绕)。以2为因数进行填充可以得到准确的结果,但是,将可获得的最大分辨率减半,并且减慢了计算速度,这可能会妨碍实时计算的可行性。在此提出,首先以原始分辨率执行计算a-允许混叠a-并以较低的分辨率通过附加卷积消除混叠,以减轻有关内存大小和计算速度的这些限制,我们将这一过程称为“虚拟”零填充。对虚拟零填充进行了数值和实验测试,并通过常规零填充和几种模型上的解析解(对于球体)进行了验证。通过在动态计算过程中实现虚拟零填充来说明提高效率的过程。预期效率的提高与超高场MRI中空间和时间分辨率的不断提高有关。给出了使用离散格林函数进行圆卷积和使用连续格林函数进行k空间滤波的过程。 Magn Reson Med,2012年。

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