首页> 外文会议>Conference on Medical Imaging: Visualization, Image-Guided Procedures, and Modeling >Investigation of new flow modifying endovascular image-guided interventional (EIGI) techniques in patient-specific aneurysm phantoms (PSAPs) using optical imaging
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Investigation of new flow modifying endovascular image-guided interventional (EIGI) techniques in patient-specific aneurysm phantoms (PSAPs) using optical imaging

机译:使用光学成像对患者特异性动脉瘤偶像(Psaps)患者特异性血管内血管型介入(EIGI)技术的研究

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Effective minimally invasive treatment of cerebral bifurcation aneurysms is challenging due to the complex and remote vessel morphology. An evaluation of endovascular treatment in a phantom involving image-guided deployment of new asymmetric stents consisting of polyurethane patches placed to modify blood flow into the aneurysm is reported. The 3D lumen-geometry of a patient-specific basilar-artery bifurcation aneurysm was derived from a segmented computed-tomography dataset. This was used in a stereolithographic rapid-prototyping process to generate a mold which was then used to create any number of exact wax models. These models in turn were used in a lost-wax technique to create transparent elastomer patient-specific aneurysm phantoms (PSAP) for evaluating the effectiveness of asymmetric-stent deployment for flow modification. Flow was studied by recording real-time digitized video images of optical dye in the PSAP and its feeding vessel. For two asymmetric stent placements: through the basilar into the right-posterior communicating artery (RPCA) and through the basilar into the left-posterior communicating artery (LPCA), the greatest deviation of flow streamlines away from the aneurysm occurred for the RPCA stent deployment. Flow was also substantially affected by variations of inflow angle into the basilar artery, resulting in alternations in washout times as derived from time-density curves. Evaluation of flow in the PSAPs with real-time optical imaging can be used to determine new EIGI effectiveness and to validate computational-fluid-dynamic calculations for EIGI-treatment planning.
机译:由于复杂和远程血管形态,脑分叉动脉瘤的有效微创治疗是挑战性的。据报道,涉及由放置在动脉瘤进入动脉瘤中的聚氨酯贴剂组成的新的非对称支架的血管腔内血管内治疗的评估。患者特异性基础动脉分叉动脉瘤的3D内腔几何形状来自分段计算断层摄影数据集。这用于立体光刻的快速原型工艺,以产生模具,然后用于产生任何数量的精确蜡模型。这些模型依次用于丢失的蜡技术,以产生透明弹性体患者特异性动脉瘤模谱(PSAP),用于评估流动修饰的不对称支架部署的有效性。通过在PSAP及其进料容器中记录光学染料的实时数字化视频图像来研究流动。对于两个不对称的支架展示:通过基础连通动脉(RPCA)并通过基础通信动脉(LPCA),流动从动脉瘤的流动流出的最大偏差发生在RPCA支架部署。流动也基本上受到基底动脉进入基底动脉的变化的影响,导致从时间密度曲线衍生的冲洗时间中的交替。利用实时光学成像对PSAP中流动的评估可用于确定新的EIGI效果,并验证用于EIGI治疗计划的计算流体动态计算。

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