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脑动脉瘤血管造影中的造影剂沉积。

Contrast settling in cerebral aneurysm angiography.

作者信息

Wang Zhi-Jie, Hoffmann Kenneth R, Wang Zhou, Rudin Stephen, Guterman Lee R, Meng Hui

机构信息

Toshiba Stroke Research Center, University at Buffalo, State University of New York, 3435 Main Street, 445 BRB, Buffalo, NY 14214, USA.

出版信息

Phys Med Biol. 2005 Jul 7;50(13):3171-81. doi: 10.1088/0031-9155/50/13/014. Epub 2005 Jun 22.

Abstract

During angiography, blood flow is visualized with a radiopaque contrast agent, which is denser than blood. In complex vasculature, such as cerebral saccular aneurysms, the density difference may produce an appreciable gravity effect, where the contrast material separates from blood and settles along the gravity direction. Although contrast settling has been occasionally reported before, the fluid mechanics behind it have not been explored. Furthermore, the severity of contrast settling in cerebral aneurysms varies significantly from case to case. Therefore, a better understanding of the physical principles behind this phenomenon is needed to evaluate contrast settling in clinical angiography. In this study, flow in two identical groups of sidewall aneurysm models with varying parent-vessel curvature was examined by angiography. Intravascular stents were deployed into one group of the models. To detect contrast settling, we used lateral view angiography. Time-intensity curves were analysed from the angiographic data, and a computational fluid dynamic analysis was conducted. Results showed that contrast settling was strongly related to the local flow dynamics. We used the Froude number, a ratio of flow inertia to gravity force, to characterize the significance of gravity force. An aneurysm with a larger vessel curvature experienced higher flow, which resulted in a larger Froude number and, thus, less gravitational settling. Addition of a stent reduced the aneurysmal flow, thereby increasing the contrast settling. We found that contrast settling resulted in an elevated washout tail in the time-intensity curve. However, this signature is not unique to contrast settling. To determine whether contrast settling is present, a lateral view should be obtained in addition to the anteroposterior (AP) view routinely used clinically so as to rule out contrast settling and hence to enable a valid time-intensity curve analysis of blood flow in the aneurysm.

摘要

在血管造影术中,使用比血液密度更高的不透射线造影剂来显示血流。在复杂的血管系统中,如脑囊状动脉瘤,密度差异可能会产生明显的重力效应,造影剂会与血液分离并沿重力方向沉降。尽管之前偶尔有关于造影剂沉降的报道,但背后的流体力学原理尚未得到探索。此外,脑动脉瘤中造影剂沉降的严重程度在不同病例间差异很大。因此,需要更好地理解这一现象背后的物理原理,以便在临床血管造影术中评估造影剂沉降情况。在本研究中,通过血管造影术检查了两组相同的侧壁动脉瘤模型中不同母血管曲率情况下的血流情况。在其中一组模型中植入了血管内支架。为了检测造影剂沉降,我们使用了侧位血管造影术。从血管造影数据中分析时间-强度曲线,并进行了计算流体动力学分析。结果表明,造影剂沉降与局部血流动力学密切相关。我们使用弗劳德数(流动惯性与重力之比)来表征重力的重要性。血管曲率较大的动脉瘤血流速度较高,导致弗劳德数较大,因此重力沉降较小。添加支架会降低动脉瘤内的血流,从而增加造影剂沉降。我们发现造影剂沉降会导致时间-强度曲线中的洗脱尾升高。然而,这种特征并非造影剂沉降所特有。为了确定是否存在造影剂沉降,除了临床常规使用的前后位(AP)视图外,还应获取侧位视图,以排除造影剂沉降,从而能够对动脉瘤内的血流进行有效的时间-强度曲线分析。

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