Sarrami-Foroushani Ali, Lassila Toni, MacRaild Michael, Asquith Joshua, Roes Kit C B, Byrne James V, Frangi Alejandro F
Centre for Computational Imaging and Simulation Technologies in Biomedicine (CISTIB), School of Computing, University of Leeds, Leeds, UK.
Leeds Institute for Cardiovascular and Metabolic Medicine (LICAMM), School of Medicine, University of Leeds, Leeds, UK.
Nat Commun. 2021 Jun 23;12(1):3861. doi: 10.1038/s41467-021-23998-w.
The cost of clinical trials is ever-increasing. In-silico trials rely on virtual populations and interventions simulated using patient-specific models and may offer a solution to lower these costs. We present the flow diverter performance assessment (FD-PASS) in-silico trial, which models the treatment of intracranial aneurysms in 164 virtual patients with 82 distinct anatomies with a flow-diverting stent, using computational fluid dynamics to quantify post-treatment flow reduction. The predicted FD-PASS flow-diversion success rates replicate the values previously reported in three clinical trials. The in-silico approach allows broader investigation of factors associated with insufficient flow reduction than feasible in a conventional trial. Our findings demonstrate that in-silico trials of endovascular medical devices can: (i) replicate findings of conventional clinical trials, and (ii) perform virtual experiments and sub-group analyses that are difficult or impossible in conventional trials to discover new insights on treatment failure, e.g. in the presence of side-branches or hypertension.
临床试验的成本在不断增加。计算机模拟试验依赖于使用患者特异性模型模拟的虚拟人群和干预措施,可能为降低这些成本提供一种解决方案。我们展示了血流分流器性能评估(FD-PASS)计算机模拟试验,该试验使用计算流体动力学对164名具有82种不同解剖结构的虚拟患者的颅内动脉瘤进行治疗建模,使用血流分流支架来量化治疗后血流减少情况。预测的FD-PASS血流分流成功率与之前三项临床试验报告的值相符。与传统试验相比,计算机模拟方法能够更广泛地研究与血流减少不足相关的因素。我们的研究结果表明,血管内医疗器械的计算机模拟试验能够:(i)复制传统临床试验的结果,以及(ii)进行在传统试验中难以或无法进行的虚拟实验和亚组分析,以发现关于治疗失败的新见解,例如在存在侧支或高血压的情况下。