Ahn Sinyeob, Shin Dongsuk, Tateshima Satoshi, Tanishita Kazuo, Vinuela Fernando, Sinha Shantanu
Department of Biomedical Engineering, University of California-Los Angeles, Los Angeles, CA, USA.
J Magn Reson Imaging. 2007 Jun;25(6):1120-30. doi: 10.1002/jmri.20928.
To study spatial and temporal distribution of wall shear stress (WSS) of intracranial aneurysm models using magnetic resonance phase contrast (MR-PC) imaging, and to compare results to those obtained in our previous study using laser Doppler velocimetry (LDV).
High-resolution MR-PC imaging was performed on aneurysm models created from 3D in vivo data of a basilar artery (BA) tip and a middle cerebral artery (MCA) aneurysm. WSS was measured by calculating the rate of shearing strain using image postprocessing techniques. WSS was characterized using several parameters, including average WSS and oscillatory shear index (OSI).
Both aneurysms showed the highest WSS at an ostium. A bleb region in the BA tip and a dome region in the MCA aneurysm were consistently exposed to high WSS within a small local area with high spatial variation and little temporal change in comparison to other aneurysmal regions. High correlation was noted for the spatial distribution at the peak systole between the MR-PC and the LDV studies, with the correlation coefficient value of 77% to 81%.
MR-PC imaging showed good agreement with the reference LDV study, confirming its potential to study hemodynamics of physiologically realistic in vitro intracranial aneurysm models. Characteristic patterns of WSS, such as high spatial variation and absence of temporal variation, combined with locally increased high WSS as determined by MR-PC imaging, may elucidate the effect of WSS on aneurysmal development and rupture.
使用磁共振相位对比(MR-PC)成像研究颅内动脉瘤模型壁面切应力(WSS)的时空分布,并将结果与我们之前使用激光多普勒测速法(LDV)获得的结果进行比较。
对由基底动脉(BA)尖端和大脑中动脉(MCA)动脉瘤的三维体内数据创建的动脉瘤模型进行高分辨率MR-PC成像。通过使用图像后处理技术计算剪切应变率来测量WSS。使用包括平均WSS和振荡剪切指数(OSI)在内的几个参数对WSS进行表征。
两个动脉瘤在瘤口处均显示出最高的WSS。与其他动脉瘤区域相比,BA尖端的一个小泡区域和MCA动脉瘤的一个穹窿区域在一个小局部区域内始终暴露于高WSS,具有高空间变化和小时间变化。MR-PC和LDV研究在收缩期峰值时的空间分布具有高度相关性,相关系数值为77%至81%。
MR-PC成像与参考LDV研究显示出良好的一致性,证实了其研究生理逼真的体外颅内动脉瘤模型血流动力学的潜力。WSS的特征模式,如高空间变化和无时间变化,以及MR-PC成像确定的局部高WSS增加,可能阐明WSS对动脉瘤发展和破裂的影响。