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[采用减法映射和连续方法的并行磁共振成像中的信噪比测量]

[Signal-to-noise ratio measurement in parallel MRI with subtraction mapping and consecutive methods].

作者信息

Imai Hiroshi, Miyati Tosiaki, Ogura Akio, Doi Tsukasa, Tsuchihashi Toshio, Machida Yoshio, Kobayashi Masato, Shimizu Kouzou, Kitou Yoshihiro

机构信息

Department of Radiological Technology, Anjo Kosei Hospital.

出版信息

Nihon Hoshasen Gijutsu Gakkai Zasshi. 2008 Aug 20;64(8):930-6. doi: 10.6009/jjrt.64.930.

Abstract

When measuring the signal-to-noise ratio (SNR) of an image the used parallel magnetic resonance imaging, it was confirmed that there was a problem in the application of past SNR measurement. With the method of measuring the noise from the background signal, SNR with parallel imaging was higher than that without parallel imaging. In the subtraction method (NEMA standard), which sets a wide region of interest, the white noise was not evaluated correctly although SNR was close to the theoretical value. We proposed two techniques because SNR in parallel imaging was not uniform according to inhomogeneity of the coil sensitivity distribution and geometry factor. Using the first method (subtraction mapping), two images were scanned with identical parameters. The SNR in each pixel divided the running mean (7 by 7 pixels in neighborhood) by standard deviation/radical2 in the same region of interest. Using the second (consecutive) method, more than fifty consecutive scans of the uniform phantom were obtained with identical scan parameters. Then the SNR was calculated from the ratio of mean signal intensity to the standard deviation in each pixel on a series of images. Moreover, geometry factors were calculated from SNRs with and without parallel imaging. The SNR and geometry factor using parallel imaging in the subtraction mapping method agreed with those of the consecutive method. Both methods make it possible to obtain a more detailed determination of SNR in parallel imaging and to calculate the geometry factor.

摘要

在测量使用并行磁共振成像的图像的信噪比(SNR)时,证实过去的SNR测量应用存在问题。采用从背景信号测量噪声的方法,并行成像的SNR高于无并行成像的情况。在设置了较宽感兴趣区域的减法方法(NEMA标准)中,尽管SNR接近理论值,但白噪声未得到正确评估。由于并行成像中的SNR根据线圈灵敏度分布和几何因子的不均匀性而不均匀,我们提出了两种技术。使用第一种方法(减法映射),用相同参数扫描两幅图像。每个像素中的SNR将感兴趣区域中相同区域的滑动平均值(7×7像素邻域)除以标准偏差/√2。使用第二种(连续)方法,以相同的扫描参数对均匀体模进行五十多次连续扫描。然后根据一系列图像中每个像素的平均信号强度与标准偏差之比计算SNR。此外,根据有无并行成像时的SNR计算几何因子。减法映射方法中使用并行成像的SNR和几何因子与连续方法的一致。两种方法都使得能够更详细地确定并行成像中的SNR并计算几何因子。

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