Canon Stroke and Vascular Research Center, University at Buffalo, Buffalo, NY 14203, USA.
Department of Mechanical and Aerospace Engineering, University at Buffalo, Buffalo, NY 14203, USA.
J R Soc Interface. 2021 Dec;18(185):20210583. doi: 10.1098/rsif.2021.0583. Epub 2021 Dec 15.
Stent retriever thrombectomy is a pre-eminent treatment modality for large vessel ischaemic stroke. Simulation of thrombectomy could help understand stent and clot mechanics in failed cases and provide a digital testbed for the development of new, safer devices. Here, we present a novel, thrombectomy method using a hybrid finite-element analysis (FEA) and smoothed particle hydrodynamics (SPH). Inspired by its biological structure and components, the blood clot was modelled with the hybrid FEA-SPH method. The Solitaire self-expanding stent was parametrically reconstructed from micro-CT imaging and was modelled as three-dimensional finite beam elements. Our simulation encompassed all steps of mechanical thrombectomy, including stent packaging, delivery and self-expansion into the clot, and clot extraction. To test the feasibility of our method, we simulated clot extraction in simple straight vessels. This was compared against thrombectomies using the same stent, vessel geometry, and clot size and composition. Comparisons with benchtop tests indicated that our model was able to accurately simulate clot deflection and penetration of stent wires into the clot, the relative movement of the clot and stent during extraction, and clot fragmentation/embolus formation. In this study, we demonstrated that coupling FEA and SPH techniques could realistically model stent retriever thrombectomy.
取栓支架血栓切除术是治疗大血管缺血性脑卒中的卓越治疗方法。模拟取栓术可以帮助理解失败病例中的支架和血栓机制,并为新的、更安全的设备的开发提供数字测试平台。在这里,我们提出了一种新的取栓方法,使用混合有限元分析(FEA)和光滑粒子流体动力学(SPH)。受其生物结构和组成的启发,使用混合 FEA-SPH 方法对血栓进行建模。Solitaire 自膨式支架从微 CT 成像中进行参数化重建,并被建模为三维有限梁单元。我们的模拟涵盖了机械取栓的所有步骤,包括支架包装、输送和自扩张到血栓中,以及血栓提取。为了测试我们方法的可行性,我们模拟了在简单直血管中的血栓提取。这与使用相同支架、血管几何形状以及血栓大小和成分的取栓术进行了比较。与台式测试的比较表明,我们的模型能够准确模拟支架丝在血栓中的偏转和穿透、提取过程中血栓和支架的相对运动以及血栓碎片/栓子的形成。在这项研究中,我们证明了结合 FEA 和 SPH 技术可以真实地模拟取栓支架血栓切除术。