Tresoldi D, Cadioli M, Ponzini R, Esposito A, De Cobelli F, Morbiducci U, Rizzo G
Institute of Molecular Bioimaging and Physiology, CNR, Segrate (Milan), Italy; Bioengineering Department, Politecnico di Milano, Milan, Italy.
Magn Reson Med. 2014 Apr;71(4):1621-31. doi: 10.1002/mrm.24811. Epub 2013 Jun 24.
To propose and evaluate an anisotropic diffusion filter to improve visualization and analysis of the thoracic aorta local hemodynamics from phase-contrast MRI sensitivity encoding imaging.
The filter parameters were tailored to the phase-contrast MRI sensitivity encoding data, using a simple calibration procedure. The filter was applied to 20 phase-contrast MR image studies (five subjects acquired with four different sensitivity encoding reduction factors). The filter effect was estimated with respect to image quality (noise in velocity images, σ(n)), regularity of the velocity fields (divergence; relative error in velocity magnitude, and absolute error in flow direction), aorta flow pattern visualization (streamlines, secondary flows) and flow rate quantification.
σ(n) decreased up to three times, divergence, error in velocity magnitude, and absolute error in flow direction decreased (by at least 313, 40, and 10%, respectively), indicating less noisy and more regular velocity fields after filtering. Streamline analysis confirmed the beneficial effect of anisotropic diffusion filter, both visually and quantitatively (streamline numbers increased by 207% in whole cardiac cycle and by 180% in systolic phase). A high correlation (r = 0.99) between the prefiltering and postfiltering aortic flow rate values was found.
The anisotropic diffusion filter approach can be considered effective in improving the visualization and analysis of the thoracic aorta hemodynamics from phase-contrast MRI sensitivity encoding images.
提出并评估一种各向异性扩散滤波器,以通过相位对比MRI灵敏度编码成像改善胸主动脉局部血流动力学的可视化和分析。
使用简单的校准程序,根据相位对比MRI灵敏度编码数据调整滤波器参数。将该滤波器应用于20项相位对比MR图像研究(5名受试者,采用4种不同的灵敏度编码缩减因子采集)。从图像质量(速度图像中的噪声,σ(n))、速度场的规则性(散度;速度大小的相对误差和流向的绝对误差)、主动脉血流模式可视化(流线、二次流)和流速定量等方面评估滤波器效果。
σ(n)降低了多达三倍,散度、速度大小误差和流向绝对误差均降低(分别至少降低313%、40%和10%),表明滤波后速度场噪声更小且更规则。流线分析在视觉和定量方面均证实了各向异性扩散滤波器的有益效果(整个心动周期流线数量增加207%,收缩期增加180%)。发现滤波前和滤波后主动脉流速值之间具有高度相关性(r = 0.99)。
各向异性扩散滤波器方法可有效改善相位对比MRI灵敏度编码图像中胸主动脉血流动力学的可视化和分析。