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首页> 外文期刊>American Journal of Neuroradiology >Influence of Geometric and Hemodynamic Parameters on Aneurysm Visualization during Three-Dimensional Rotational Angiography: An in Vitro Study
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Influence of Geometric and Hemodynamic Parameters on Aneurysm Visualization during Three-Dimensional Rotational Angiography: An in Vitro Study

机译:几何和血液动力学参数对三维旋转血管造影术中动脉瘤可视化的影响:一项体外研究。

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摘要

BACKGROUND AND PURPOSE: Aneurysm depiction with three-dimensional (3D) rotational angiography is influenced by investigator-defined parameters such as image acquisition and contrast agent injection and by the hemodynamic pattern in the parent artery and aneurysm. To assess the impact of the geometric configuration of parent artery and aneurysm on the 3D visualization of saccular aneurysms, we studied silicone aneurysm models under pulsatile-flow conditions. METHODS: Rotational angiography was performed in three bifurcation and three lateral aneurysm models with ostia of different widths. Three acquisition modalities (5, 8, and 14 seconds in duration, acquisition rate of 10 frames per second) and two techniques for the injection of contrast material (continuous flow and injection with an initial bolus) were applied. 3D reconstructions were obtained with a volume-rendering technique. RESULTS: Bifurcation aneurysms were visualized with high accuracy. Filling deficits distant to the inflow zone could be compensated for with the bolus-injection technique, and complete depiction of aneurysm shape was achieved in the 8-second rotation with 20 mL of contrast agent. In lateral aneurysms, the accuracy of 3D reconstructions depended on the width of the ostium. Although rotational studies in wide-necked lateral aneurysms yielded adequate reconstructions, 3D visualization of small-necked aneurysms was incomplete with the preferential depiction of the distal shell, which represents the inflow zone into the aneurysmal lumen. CONCLUSION: Contrast agent injection with the initial-bolus technique improved the depiction of aneurysms, compared with the continuous-flow method. Reconstructions of rotational studies of narrow-necked lateral aneurysms yielded incomplete visualization of the aneurysm.
机译:背景与目的:三维 (3D)旋转血管造影的动脉瘤描绘受研究者定义的 参数的影响,例如图像获取和造影剂注入 ,并通过亲代动脉和动脉瘤的血流动力学模式进行评估。 评估亲代 动脉和动脉瘤的几何构型对囊状动脉瘤的3D可视化的影响, 我们研究了脉动血流条件下的硅酮动脉瘤模型。 方法:在三个分叉的supup和ssup>的三个侧向动脉瘤模型中进行旋转血管造影。 三种获取方式(持续时间分别为5、8和14秒, 每秒10帧的获取速率)和两种技术 用于注入对比剂(连续流动和 初始推注注入)被应用。通过体绘制技术获得了3D重建 结果:分叉动脉瘤的可视化具有很高的准确性。 填充缺陷可以远离流入区域通过推注技术补偿 ,并在 20 mL的对比下,在8秒的旋转中完成了对动脉瘤形状的完整描述 代理商。在外侧动脉瘤中,3D重建的准确性 取决于孔口的宽度。尽管 在宽颈外侧动脉瘤中的旋转研究得到了 足够的重建,但是小颈动脉瘤 的3D可视化并不完整,并且远端的优先描绘 壳,代表进入动脉瘤 内腔的流入区域。 结论:初始推注 造影剂注射与 连续流方法相比,该技术改善了动脉瘤的描绘。狭窄颈外侧动脉瘤的旋转研究 的重建导致动脉瘤的不完整可视化

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  • 来源
    《American Journal of Neuroradiology》 |2003年第4期|00000597-00000603|共7页
  • 作者单位

    Department of Neuroradiology, University Hospital Tuebingen, Germany;

    Department of Neuroradiology, University Hospital Tuebingen, Germany;

    Department of Neurosurgery, University Hospital Tuebingen, Germany;

    Department of Neuroradiology, University Hospital Tuebingen, Germany;

    Department of Neuroradiology, University Hospital Tuebingen, Germany;

    Department of Neuroradiology, University Hospital Tuebingen, Germany;

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