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用于提高3D功能磁共振成像中SNR效率和时间分辨率的部分k空间采集方法。

Partial-k-space acquisition method for improved SNR efficiency and temporal resolution in 3D fMRI.

作者信息

Hu Y, Glover G H

机构信息

Department of Physics, Stanford University, Stanford, California 94305-5488, USA.

出版信息

Magn Reson Med. 2006 May;55(5):1106-13. doi: 10.1002/mrm.20877.

Abstract

Previous studies have shown the relative importance of physiological noise and thermal noise in 2D MR images. Since physiological noise is proportional to the signal, it can be the dominant component at the center of k-space. In this study we demonstrate that the signal-to-noise ratio (SNR) efficiency and temporal resolution for 3D functional MRI (fMRI) are increased by the use of a partial-k-space acquisition method. In partial-k-space methods, the high-spatial-frequency components are doubled in amplitude during reconstruction, resulting in twice as much noise from those components. However, in sum these contributions are relatively small compared to those at the low spatial frequencies, where physiological noise is dominant. Therefore, the effect on the final MR images is almost negligible due to the square summation rule. Thus, the partial-k-space 3D method sacrifices much less SNR than is expected from the thermal noise model, and the SNR efficiency is increased compared to a full-k-space acquisition since more time frames can be collected for the same scan time. Accordingly, the temporal resolution can be increased in 3D acquisitions because only partial coverage of k-space is necessary. Experimental results confirm that more activation with a higher average t-score is detected by this method.

摘要

先前的研究已经表明了生理噪声和热噪声在二维磁共振成像(MRI)中的相对重要性。由于生理噪声与信号成正比,它可能是k空间中心的主要成分。在本研究中,我们证明了通过使用部分k空间采集方法,可以提高三维功能磁共振成像(fMRI)的信噪比(SNR)效率和时间分辨率。在部分k空间方法中,高空间频率成分在重建过程中幅度加倍,导致这些成分产生的噪声增加一倍。然而,总体而言,与生理噪声占主导的低空间频率成分相比,这些贡献相对较小。因此,由于平方求和规则,对最终磁共振图像的影响几乎可以忽略不计。因此,部分k空间三维方法牺牲的SNR比热噪声模型预期的要少得多,并且与全k空间采集相比,SNR效率有所提高,因为在相同的扫描时间内可以采集更多的时间帧。相应地,在三维采集中可以提高时间分辨率,因为只需要对k空间进行部分覆盖。实验结果证实,该方法检测到更多具有更高平均t分数的激活。

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