首页> 外文会议>Conference on Medical Imaging 2003: Visualization, Image-Guided Procedures, and Display Feb 16-18, 2003 San Diego, California, USA >Volume Estimation of Cerebral Aneurysms from Biplane DSA: a Comparison with Measurements on 3-D Rotational Angiography Data
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Volume Estimation of Cerebral Aneurysms from Biplane DSA: a Comparison with Measurements on 3-D Rotational Angiography Data

机译:双翼DSA对脑动脉瘤的体积估计:与3-D旋转血管造影数据的测量结果的比较

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A cerebral aneurysm is a persistent localized dilatation of the wall of a cerebral vessel. One of the techniques applied to treat cerebral aneurysms is the Guglielmi detachable coil (GDC) embolization. The goal of this technique is to embolize the aneurysm with a mesh of platinum coils to reduce the risk of aneurysm rupture. However, due to the blood pressure it is possible that the platinum wire is deformed. In this case, re-embolization of the aneurysm is necessary. The aim of this project is to develop a computer program to estimate the volume of cerebral aneurysms from archived laser hard copies of biplane digital subtraction angiography (DSA) images. Our goal is to determine the influence of the packing percentage, i.e., the ratio between the volume of the aneurysm and the volume of the coil mesh, on the stability of the coil mesh in time. The method we apply to estimate the volume of the cerebral aneurysms is based on the generation of a 3-D geometrical model of the aneurysm from two biplane DSA images. This 3-D model can be seen as an stack of 2-D ellipsis. The volume of the aneurysm is the result of performing a numerical integration of this stack. The program was validated using balloons filled with contrast agent. The availability of 3-D data for some of the aneurysms enabled to perform a comparison of the results of this method with techniques based on 3-D data.
机译:脑动脉瘤是脑血管壁的持续局部扩张。用于治疗脑动脉瘤的技术之一是Guglielmi可分离线圈(GDC)栓塞术。该技术的目标是用铂网线圈栓塞动脉瘤,以降低动脉瘤破裂的风险。但是,由于血压的原因,铂丝可能会变形。在这种情况下,必须重新栓塞动脉瘤。该项目的目的是开发一种计算机程序,用于从双平面数字减影血管造影(DSA)图像的存档激光硬拷贝中估算脑动脉瘤的体积。我们的目标是确定填充百分比,即动脉瘤的体积与线圈网的体积之比,对线圈网的稳定性的及时影响。我们应用于估计脑动脉瘤体积的方法是基于从两个双平面DSA图像生成的3D几何模型的动脉瘤。此3-D模型可以看作是2-D省略号的堆栈。动脉瘤的体积是对该堆栈进行数值积分的结果。使用装有造影剂的气球验证了该程序。某些动脉瘤的3D数据可用性使该方法的结果与基于3D数据的技术能够进行比较。

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