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Improved functional asssessment of ischemic severity using 3D printed models

机译:使用3D印刷模型改善了缺血严重性的功能评估

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Purpose: To develop a novel in vitro method of evaluating coronary artery ischemia using a combination of noninvasive coronary CT angiograms (CCTA) and 3D printing. Materials and Methods: Five patients with varying degrees of coronary artery disease who underwent non-invasive CCTA scans and invasive fractional flow reserve (FFR) of their left anterior descending coronary artery (LAD) were included in this study. The LAD artery was segmented and reconstructed using Mimics (Materialise). The segmented models were then 3D printed using a Carbon (Carbon Inc.,) and Objet260 Connex (Stratasys) printers with urethane methacrylate (UMA) family of rigid resins and Veroclear, respectively. An in vitro flow circulation system representative of invasive measurements in a cardiac catheterization laboratory was developed to experimentally evaluate the hemodynamic parameters of pressure and flow. Physiological coronary circulation was modelled in vitro as flow-dependent stenosis resistance in series with variable downstream resistance. A range of physiological flow rates was applied by a peristaltic steady flow pump and titrated by a flow sensor. The pressure drop and the pressure ratio (Pd/Pa) were assessed for patient-specific aortic pressure and differing flow rates to evaluate FFR in vitro. Results: For these five models, there was a good positive correlation (r = 0.78) between the in vitro and invasive FFR. The mean differences, as assessed by Bland-Altman analysis, between in vitro and invasively measured FFR was at 0.01±0.1 (95% limit of agreement -0.1169 to 0.1369). Conclusions: 3D printed patient-specific models can be used in a non-invasive in vitro environment to quantify coronary artery ischemia as assessed by invasive FFR.
机译:目的:为了开发使用非侵入性冠状动脉造影CT(CCTA)和三维打印的组合评估冠状动脉缺血体外方法的新颖。材料和方法:5例谁接受非侵入性CCTA扫描和他们的左冠状动脉前降支(LAD)侵入血流储备分数(FFR)不同程度的冠状动脉疾病被纳入这项研究。在LAD动脉是分段的,并使用模拟物(Materialise的)重建。分段的模型然后使用一个碳(Carbon公司)和Objet260康奈尔克斯(Stratasys公司)打印机具有刚性树脂和Veroclear的聚氨酯甲基丙烯酸酯(UMA)家族,分别三维印刷。一种体外流循环系统代表在心脏导管插入术实验室侵入式测量的开发是为了实验评价的压力的血液动力学参数和流动。生理冠脉循环在体外建模为在具有可变电阻的下游串联流依赖性狭窄电阻。生理流速的范围通过蠕动稳流泵施加和由流量传感器滴定。的压力降和压力比(钯/ PA)进行了评估患者特异性主动脉压力和不同的流动速率在体外评估FFR。结果:对于这些五种模式,又出现了在体外和侵入性FFR之间的良好的正相关(r = 0.78)。平均差,如通过奥特曼分析在体外评估之间和创测量FFR是在0.01±0.1(协议的95%的上限-0.1169至0.1369)。结论:印刷3D患者特定的模型可以以非侵入性的可用于在体外环境通过侵入性FFR所评估量化冠状动脉缺血。

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