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用于预测术后心肺循环行为的左心发育不良患者特定生物力学模型。

Patient-specific biomechanical model of hypoplastic left heart to predict post-operative cardio-circulatory behaviour.

机构信息

Laboratory of Biological Structure Mechanics, Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Milan, Italy.

Department of Cardiothoracic Surgery, Great Ormond Street Hospital for Children, NHS Foundation Trust, London, United Kingdom.

出版信息

Med Eng Phys. 2017 Sep;47:85-92. doi: 10.1016/j.medengphy.2017.06.024. Epub 2017 Jul 8.

Abstract

Hypoplastic left heart syndrome is a complex congenital heart disease characterised by the underdevelopment of the left ventricle normally treated with a three-stage surgical repair. In this study, a multiscale closed-loop cardio-circulatory model is created to reproduce the pre-operative condition of a patient suffering from such pathology and virtual surgery is performed. Firstly, cardio-circulatory parameters are estimated using a fully closed-loop cardio-circulatory lumped parameter model. Secondly, a 3D standalone FEA model is build up to obtain active and passive ventricular characteristics and unloaded reference state. Lastly, the 3D model of the single ventricle is coupled to the lumped parameter model of the circulation obtaining a multiscale closed-loop pre-operative model. Lacking any information on the fibre orientation, two cases were simulated: (i) fibre distributed as in the physiological right ventricle and (ii) fibre as in the physiological left ventricle. Once the pre-operative condition is satisfactorily simulated for the two cases, virtual surgery is performed. The post-operative results in the two cases highlighted similar hemodynamic behaviour but different local mechanics. This finding suggests that the knowledge of the patient-specific fibre arrangement is important to correctly estimate the single ventricle's working condition and consequently can be valuable to support clinical decision.

摘要

左心发育不全综合征是一种复杂的先天性心脏病,其特征是左心室发育不全,通常采用三阶段手术修复。在这项研究中,创建了一个多尺度闭环心肺循环模型,以重现患有这种病理的患者的术前状况,并进行虚拟手术。首先,使用完全闭环心肺循环集总参数模型估计心肺循环参数。其次,建立了一个独立的 3D 有限元分析模型,以获得主动和被动心室特性以及卸载参考状态。最后,将单心室的 3D 模型与循环的集总参数模型耦合,获得多尺度闭环术前模型。由于缺乏纤维方向的任何信息,模拟了两种情况:(i)纤维分布与生理右心室中的纤维分布相同,(ii)纤维与生理左心室中的纤维分布相同。一旦两种情况下的术前条件都得到了令人满意的模拟,就进行了虚拟手术。两种情况下的术后结果显示出相似的血液动力学行为,但局部力学不同。这一发现表明,了解患者特定的纤维排列对于正确估计单心室的工作状况非常重要,因此可以为临床决策提供有价值的支持。

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