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A numerical study of hepatic artery flow for prediction of congenital biliary atresia

机译:肝动脉血流预测先天性胆道闭锁的数值研究

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Biliary atresia (BA) is the most severe life-threatening and quickly developed hepatobiliary disease in infants which will lead to destructive inflammatory process of both intra-hepatic and extra-hepatic bile ducts. Currently, the common diagnosis method is Ultrasonography (US). However, its sensitivity commonly arrived at the range of 70% to 80%. Here, we investigated a patient with BA, Patient 1, and a normal patient, Patient 2, were used as control. There is no much difference from the US results of two patients. Due to close relationship between the occurrence and development of BA and the hemodynamic changes, two three-dimensional (3D) hepatic arteries (HA) with splenic artery (SA) models were constructed from Computed Tomography (CT) images, and the simulation of computational fluid dynamics (CFD) was performed to evaluate the hemodynamic outcomes of HA and SA. Pressure, wall shear stress (WSS) and streamlines were calculated to estimate and compare the results of two models. By the analysis, we clearly found that the value of total pressure of HA in Patient 1 was much higher and uneven than that of HA in Patient 2. WSS distribution of Patient 1 is higher and uneven. The blood flow in HA of Patient 1 was more turbulent and complex than in HA of the normal patient. These hemodynamic abnormalities parameters were more sensitive than US, which may be able to provide a prediction of BA for clinicians. And CFD can be a potential noninvasive tool for early diagnosis of BA.
机译:胆道闭锁(BA)是婴儿中最严重的威胁生命并且发展迅速的肝胆疾病,它将导致肝内和肝外胆管的破坏性炎症过程。当前,常见的诊断方法是超声检查(US)。但是,其灵敏度通常达到70%至80%的范围。在这里,我们调查了一名患有BA的患者(患者1)和一名正常患者(患者2)作为对照。与两名患者的美国结果没有太大差异。由于BA的发生和发展与血流动力学变化之间存在密切的关系,因此利用计算机断层扫描(CT)图像构建了两个带有脾动脉(SA)的三维(3D)肝动脉(HA)模型,并对计算进行了仿真进行流体动力学(CFD)评估HA和SA的血液动力学结果。计算压力,壁面剪应力(WSS)和流线,以估计和比较两个模型的结果。通过分析,我们清楚地发现,患者1中HA的总压力值比患者2中HA的总压力高得多且不均匀。患者1的WSS分布较高且不均匀。与正常患者的HA相比,患者1的HA中的血流更加紊乱和复杂。这些血液动力学异常参数比US更敏感,这可能能够为临床医生提供BA的预测。 CFD可能是BA早期诊断的潜在无创工具。

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