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基于非线性各向异性滤波的磁共振血管造影降噪处理

Noise reduction in MR angiography with nonlinear anisotropic filtering.

作者信息

Du Jiang, Fain Sean B, Gu Tianliang, Grist Thomas M, Mistretta Charles A

机构信息

Department of Medical Physics, University of Wisconsin, Madison, Wisconsin 53792-3252, USA.

出版信息

J Magn Reson Imaging. 2004 May;19(5):632-9. doi: 10.1002/jmri.20047.

Abstract

PURPOSE

To evaluate three-dimensional nonlinear anisotropic filtering in suppressing image noise in high spatial resolution magnetic resonance angiograms (MRA) acquired with hybrid undersampled projection reconstruction and phase contrast vastly undersampled isotropic projection reconstruction (PC-VIPR).

MATERIALS AND METHODS

Three-dimensional nonlinear anisotropic filtering was quantitatively analyzed and evaluated through the measurement of contrast to noise ratio (CNR) in PC-VIPR images and contrast enhanced peripheral MRA images. To filter MRA images with ultra-high spatial resolution and poor CNR, a spatial frequency dependent nonlinear anisotropic filtering algorithm was proposed that uses two-step processing to filter the whole spatial frequency data.

RESULTS

Three-dimensional nonlinear anisotropic filtering was shown to be effective in suppressing noise and improving CNR in MRA with isotropic spatial resolution. Higher CNR was achieved using spatial frequency dependent nonlinear anisotropic filtering. A typical CNR gain of between 50-100% was shown in our studies.

CONCLUSION

Three-dimensional nonlinear anisotropic filtering significantly improved CNR in MRA images with isotropic spatial resolution. Spatial frequency dependent nonlinear anisotropic filtering further improved CNR for MRA images with ultra-high spatial resolution and low CNR.

摘要

目的

评估三维非线性各向异性滤波在抑制采用混合欠采样投影重建和相位对比大幅欠采样各向同性投影重建(PC-VIPR)获得的高空间分辨率磁共振血管造影(MRA)图像噪声方面的效果。

材料与方法

通过测量PC-VIPR图像和对比增强外周MRA图像中的对比噪声比(CNR),对三维非线性各向异性滤波进行定量分析和评估。为了对具有超高空间分辨率和低CNR的MRA图像进行滤波,提出了一种空间频率依赖型非线性各向异性滤波算法,该算法采用两步处理来对整个空间频率数据进行滤波。

结果

三维非线性各向异性滤波在抑制具有各向同性空间分辨率的MRA噪声和提高CNR方面显示出有效性。采用空间频率依赖型非线性各向异性滤波可实现更高的CNR。在我们的研究中,典型的CNR增益在50%-100%之间。

结论

三维非线性各向异性滤波显著提高了具有各向同性空间分辨率的MRA图像的CNR。空间频率依赖型非线性各向异性滤波进一步提高了具有超高空间分辨率和低CNR的MRA图像的CNR。

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