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通过速度编码电影磁共振成像的多扇区三维抛物面模型对圆周亚像素血管壁位置和壁面切应力进行定量分析。

Quantitation of circumferential subpixel vessel wall position and wall shear stress by multiple sectored three-dimensional paraboloid modeling of velocity encoded cine MR.

作者信息

Oyre S, Ringgaard S, Kozerke S, Paaske W P, Scheidegger M B, Boesiger P, Pedersen E M

机构信息

Department of Cardiothoracic and Vascular Surgery T, MR Research Center, Institute of Experimental Clinical Research, Aarhus University Hospital, Skejby Sygehus, Denmark.

出版信息

Magn Reson Med. 1998 Nov;40(5):645-55. doi: 10.1002/mrm.1910400502.

Abstract

Methods are lacking for accurate, noninvasive circumferential edge detection and wall shear stress calculation. Using standard MR phase contrast sequences, parts of the velocity profiles were fitted to a multiple sectored three-dimensional paraboloid model enabling exact calculation of vessel wall position and wall shear stress in 24 locations evenly distributed around the luminal vessel wall. The model was evaluated by in vitro scans and computer simulations and applied to the common carotid artery of humans. In vitro, the luminal area of a glass tube was assessed with an error of 0.9%. Computer simulations of peak systolic data revealed errors of +/-0.9% (vessel area) and +/-3.25% (wall shear stress). The in vivo results showed substantial difference between anterior and posterior wall shear stress values due to skewed velocity profiles. A new noninvasive method for highly accurate measurement of circumferential subpixel vessel wall position and wall shear stress has been developed.

摘要

目前缺乏准确、无创的圆周边缘检测和壁面剪应力计算方法。使用标准的磁共振相位对比序列,将部分速度剖面拟合到多扇区三维抛物面模型,从而能够精确计算在围绕管腔血管壁均匀分布的24个位置处的血管壁位置和壁面剪应力。该模型通过体外扫描和计算机模拟进行评估,并应用于人体颈总动脉。在体外,玻璃管的管腔面积评估误差为0.9%。收缩期峰值数据的计算机模拟显示血管面积误差为±0.9%,壁面剪应力误差为±3.25%。体内结果显示,由于速度剖面的不对称,前后壁剪应力值存在显著差异。已开发出一种用于高精度测量圆周亚像素血管壁位置和壁面剪应力的新无创方法。

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