首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >DEVELOPMENT OF STENT STRUT PATTERN FOR CEREBRAL ANEURYSM
【24h】

DEVELOPMENT OF STENT STRUT PATTERN FOR CEREBRAL ANEURYSM

机译:脑动脉瘤的支架模型开发

获取原文

摘要

Background and purpose: Stent implantation (stenting) in intracranial arteries is termed as endovascular treatment. The number of such cases has been increasing worldwide because the surgical damage resulting from stenting seem to be less than that of other treatments. The role of stenting for cerebral aneurysms is to reduce the blood flow speed in cerebral aneurysms. We have developed a computational fluid dynamics (CFD) system using a realistic stent and blood vessel and have studied the effect of the stent. Results of our study showed the stent strut pattern and stenting position to be very effective for reducing the blood flow speed in cerebral aneurysms. We have in describe the designing method used to design the stent strut pattern which reduces both the blood flow speed and the wall shear stress (WSS).Methods: An idealized aneurysm, a parent artery, and various stent shapes were used. The shape of the parent artery was a straight pipe and the aneurysm was a sphere. The stent was implanted in the neck of the aneurysm. The porosity remained of 80%, and the width of the stent strut ranged from 90 to 160[nm]. The stent strut height was fixed at a constant 150 [um]. For the constructed shape data, a tetrahedron numerical mesh was generated. Calculation using the finite volume method was performed by a commercial solver. The optimization method was applied to the CFD results, and the stent strut patterns that reduced the blood flow speed and the WSS most were determined.Conclusion: The development method of stent strut pattern was proposed. Various stent strut patterns to reduce blood flow speed and WSS in/on cerebral aneurysm were tested. The stent strut pattern that reduced the blood flow speed and that reduced the WSS were determined. In the future works, the number ofCFD cases should be increased and the optimal stent strut pattern determined.
机译:背景与目的:将颅内动脉内的支架植入(支架)称为血管内治疗。这种情况的数量在全世界范围内一直在增加,因为由支架置入术引起的外科损害似乎小于其他治疗方法。支架对脑动脉瘤的作用是降低脑动脉瘤的血流速度。我们已经开发了使用实际支架和血管的计算流体动力学(CFD)系统,并研究了支架的作用。我们的研究结果表明,支架的支撑方式和支架位置对于降低脑动脉瘤的血流速度非常有效。我们已经描述了用于设计支架支杆图案的设计方法,该设计方法降低了血流速度和壁切应力(WSS)。 方法:使用理想的动脉瘤,亲代动脉和各种支架形状。亲代动脉的形状为直管,动脉瘤为球形。支架被植入动脉瘤的颈部。孔隙率保持80%,并且支架支柱的宽度在90至160 [nm]的范围内。支架撑杆高度固定在恒定的150 [um]。对于构造的形状数据,生成了四面体数值网格。使用有限体积法的计算是由商用解算器执行的。将优化方法应用于CFD结果,并确定了降低血流速度和WSS最多的支架支撑方式。 结论:提出了支架撑杆模型的开发方法。测试了各种可减少脑动脉瘤内/上的血流速度和WSS的支架支撑方式。确定了降低血流速度和降低WSS的支架支撑方式。在未来的作品中, 应增加CFD病例并确定最佳的支架支撑方式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号