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首页> 外文期刊>IEEE Transactions on Medical Imaging >T2 restoration and noise suppression of hybrid MR images using Wiener and linear prediction techniques
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T2 restoration and noise suppression of hybrid MR images using Wiener and linear prediction techniques

机译:使用维纳和线性预测技术的混合MR图像的T2恢复和噪声抑制

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摘要

The authors address the problem of enhancing hybrid magnetic resonance (MR) images degraded by T2 effects and additive measurement noise. To reduce imaging time, MR signals are acquired using hybrid imaging (HI) sequences such as rapid acquisition relaxation-enhanced (RARE) and fast spin-echo (FSE). With these techniques, T2 effects act as a distortion filter. This T2 filter affects the signal and results in image spatial resolution and/or contrast loss. Furthermore, the amplitude and phase discontinuities in the T2 filter frequency response function may generate serious ringing artifacts. These distortions will damage image quality and affect object detectability. The authors use the Wiener filter and linear prediction (LP) technique to process HI MR signals in the spatial frequency domain (K-space) and the hybrid domain, respectively. Based on the average amplitude symmetry constraint of the spin echo signal, the amplitude frequency response function of the T2 distortion filter can be estimated and used in the Wiener filter for a global T2 amplitude restoration. Then, the linear prediction technique is utilized to obtain the local signal amplitude and phase estimates around the discontinuities of the frequency response function of the T2 filter. These estimates are used to make local amplitude and phase corrections. The effectiveness of this combined technique in correcting T2 distortion and reducing the measurement noise is analyzed and demonstrated using experiments on both phantoms and human studies.
机译:作者解决了增强由于T2效应和附加测量噪声而降低的混合磁共振(MR)图像的问题。为了减少成像时间,使用混合成像(HI)序列(例如快速采集弛豫增强(RARE)和快速自旋回波(FSE))采集MR信号。使用这些技术,T2效果可充当失真滤波器。该T2滤波器会影响信号并导致图像空间分辨率和/或对比度损失。此外,T2滤波器频率响应函数中的幅度和相位不连续性可能会产生严重的振铃失真。这些失真会损坏图像质量并影响物体的可检测性。作者使用维纳滤波器和线性预测(LP)技术分别在空间频域(K-space)和混合域中处理HI MR信号。基于自旋回波信号的平均幅度对称约束,可以估计T2失真滤波器的幅度频率响应函数,并将其用于Wiener滤波器中,以进行全局T2幅度恢复。然后,利用线性预测技术获得围绕T2滤波器频率响应函数的不连续点的局部信号幅度和相位估计。这些估计值用于进行局部幅度和相位校正。结合模体和人体研究的实验,分析并证明了这种组合技术在纠正T2失真和减少测量噪声方面的有效性。

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