首页> 外文期刊>Journal of biomechanical engineering. >Influence of connection geometry and SVC-IVC flow rate ratio on flow structures within the total cavopulmonary connection: a numerical study.
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Influence of connection geometry and SVC-IVC flow rate ratio on flow structures within the total cavopulmonary connection: a numerical study.

机译:连接几何形状和SVC-IVC流量比对总腔肺连接内流动结构的影响:一项数值研究。

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摘要

The total cavopulmonary connection (TCPC) is a palliative cardiothoracic surgical procedure used in patients with one functioning ventricle that excludes the heart from the systemic venous to pulmonary artery pathway. Blood in the superior and inferior vena cavae (SVC, IVC) is diverted directly to the pulmonary arteries. Since only one ventricle is left in the circulation, minimizing pressure drop by optimizing connection geometry becomes crucial. Although there have been numerical and in-vitro studies documenting the effect of connection geometry on overall pressure drop, there is little published data examining the effect of SVC-IVC flow rate ratio on detailed fluid mechanical structures within the various connection geometries. We present here results from a numerical study of the TCPC connection, configured with various connections and SVC:IVC flow ratios. The role of major flow parameters: shear stress, secondary flow, recirculation regions, flow stagnation regions, and flow separation, was examined. Results show a complex interplay among connection geometry, flow rate ratio and the types and effects of the various flow parameters described above. Significant changes in flow structures affected local distribution of pressure, which in turn changed overall pressure drop. Likewise, changes in local flow structure also produced changes in maximum shear stress values; this may have consequences for platelet activation and thrombus formation in the clinical situation. This study sheds light on the local flow structures created by the various connections andflow configurations and as such, provides an additional step toward understanding the detailed fluid mechanical behavior of the more complex physiological configurations seen clinically.
机译:全腔肺连接(TCPC)是一种姑息性心胸外科手术,用于具有一个功能正常的心室的患者,该心室将心脏从全身静脉到肺动脉通路排除在外。上腔静脉和下腔静脉(SVC,IVC)中的血液直接转移到肺动脉。由于循环中只剩下一个心室,因此通过优化连接几何形状来最小化压降变得至关重要。尽管已经有数值和体外研究记录了连接几何形状对整体压降的影响,但是很少有公开的数据来检验SVC-IVC流量比对各种连接几何形状内详细流体力学结构的影响。我们在这里展示了TCPC连接的数值研究结果,该连接配置了各种连接和SVC:IVC流量比。主要流动参数的作用:剪切应力,二次流,回流区域,流动停滞区域和流动分离,得到了检验。结果表明,连接几何形状,流速比以及上述各种流量参数的类型和影响之间存在复杂的相互作用。流动结构的重大变化影响了压力的局部分布,进而改变了总压降。同样,局部流动结构的变化也会导致最大剪应力值的变化。在临床情况下,这可能会对血小板活化和血栓形成产生影响。这项研究揭示了由各种连接和流动形态产生的局部流动结构,因此,为理解临床上更为复杂的生理形态的详细流体力学行为提供了新的步骤。

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