Kosior Jayme Cameron, Kosior Robert Karl, Frayne Richard
Department of Electrical and Computer Engineering, University of Calgary, Calgary, Alberta, Canada.
J Magn Reson Imaging. 2007 Dec;26(6):1514-22. doi: 10.1002/jmri.21219.
To investigate if 4D (simultaneous space and time) nonlinear filtering techniques can produce more robust cerebral blood flow (CBF) estimates by reducing noise in acquired dynamic susceptibility contrast (DSC) MR perfusion data.
A digital anthropomorphic brain perfusion phantom was constructed to analyze filter performance by: 1) deriving anthropomorphic tissue volume fractions from a human subject and 2) simulating DSC-MR perfusion signals for voxels with mixed tissue for various signal-to-noise ratios (SNRs). DSC-MR data for 11 acute ischemic stroke patients were also acquired at 3T. CBF maps cross-calibrated so that normal white matter CBF was 22 mL/minute/100 g were produced from DSC-MR data without filtering and from 4D-Gaussian and 4D-bilateral noise-filtered DSC-MR data.
The nonlinear 4D-bilateral filter yielded the lowest CBF root-mean square error (RMSE) in the phantom experiments with noise (average RMSE across all tissues regions for no filtering, 4D-Gaussian, and 4D-bilateral was 5.3 mL/minute/100 g, 6.2 mL/minute/100 g, and 4.0 mL/minute/100 g, respectively) and had the best image quality in both the phantom and patient data.
Nonlinear 4D noise filters are better suited to the 4D nature of DSC-MR data. Linear spatial filters are not appropriate and can produce larger CBF errors than without filtering.
研究四维(同时包含空间和时间)非线性滤波技术能否通过降低采集的动态磁敏感对比(DSC)磁共振灌注数据中的噪声,生成更可靠的脑血流量(CBF)估计值。
构建一个数字人体大脑灌注模型,通过以下方式分析滤波性能:1)从一名人类受试者获取人体组织体积分数;2)针对具有不同信噪比(SNR)的混合组织体素模拟DSC磁共振灌注信号。还在3T条件下采集了11例急性缺血性中风患者的DSC磁共振数据。从未滤波的DSC磁共振数据以及经过四维高斯和四维双边噪声滤波的DSC磁共振数据中生成交叉校准的CBF图,使正常白质CBF为22 mL/分钟/100g。
在有噪声的模型实验中,非线性四维双边滤波器产生的CBF均方根误差(RMSE)最低(未滤波、四维高斯和四维双边滤波在所有组织区域的平均RMSE分别为5.3 mL/分钟/100g、6.2 mL/分钟/100g和4.0 mL/分钟/100g),并且在模型和患者数据中图像质量最佳。
非线性四维噪声滤波器更适合DSC磁共振数据的四维特性。线性空间滤波器不合适,并且可能产生比未滤波时更大的CBF误差。