Potters Wouter V, van Ooij Pim, Marquering Henk, vanBavel Ed, Nederveen Aart J
Department of Radiology, Academic Medical Center, Amsterdam, The Netherlands.
J Magn Reson Imaging. 2015 Feb;41(2):505-16. doi: 10.1002/jmri.24560. Epub 2014 Jan 17.
To assess the accuracy and precision of a volumetric wall shear stress (WSS) calculation method applied to cine phase contrast magnetic resonance imaging (PC-MRI) data.
Volumetric WSS vectors were calculated in software phantoms. WSS algorithm parameters were optimized and the influence of spatial resolution and segmentation was evaluated. Subsequently, 2D cine PC-MRI data in the carotid and the aorta at varying spatial resolutions were obtained (n = 2) and compared with the simulations. Finally, volumetric WSS was calculated in 3D cine PC-MRI data of the carotid bifurcation and the aorta (n = 6).
We found that at least 8 voxels across the diameter are required to obtain a WSS accuracy of 5% and a precision of 20% in software phantoms. Systematic WSS quantification errors up to 40% were found in the case of segmentation errors. The in vivo measurements using 2D cine PC-MRI exhibited WSS increase at increasing spatial resolutions, similar to the results in software phantoms. Volumetric WSS vectors were successfully calculated in three healthy carotid bifurcations and aortas.
The effects of resolution and segmentation on the accuracy and precision of the WSS algorithm were quantified. We were able to calculate volumetric WSS in the carotid bifurcation and the aorta.
评估应用于电影相位对比磁共振成像(PC-MRI)数据的容积壁面切应力(WSS)计算方法的准确性和精确性。
在软件模型中计算容积WSS矢量。对WSS算法参数进行优化,并评估空间分辨率和分割的影响。随后,获取不同空间分辨率下颈动脉和主动脉的二维电影PC-MRI数据(n = 2),并与模拟结果进行比较。最后,在颈动脉分叉和主动脉的三维电影PC-MRI数据中计算容积WSS(n = 6)。
我们发现,在软件模型中,直径上至少需要8个体素才能获得5%的WSS准确性和20%的精确性。在存在分割误差的情况下,发现系统WSS量化误差高达40%。使用二维电影PC-MRI进行的体内测量显示,随着空间分辨率的提高,WSS增加,这与软件模型中的结果相似。在三个健康的颈动脉分叉和主动脉中成功计算出容积WSS矢量。
量化了分辨率和分割对WSS算法准确性和精确性的影响。我们能够计算颈动脉分叉和主动脉中的容积WSS。