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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Generation of Patient-Specific Cardiac Vascular Networks: A Hybrid Image-Based and Synthetic Geometric Model
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Generation of Patient-Specific Cardiac Vascular Networks: A Hybrid Image-Based and Synthetic Geometric Model

机译:特定患者的心脏血管网络的生成:基于混合图像和合成几何模型

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Objective: In this paper, we propose an algorithm for the generation of a patient-specific cardiac vascular network starting from segmented epicardial vessels down to the arterioles. Method: We extend a tree generation method based on satisfaction of functional principles, named constrained constructive optimization, to account for multiple, competing vascular trees. The algorithm simulates angiogenesis under vascular volume minimization with flow-related and geometrical constraints adapting the simultaneous tree growths to patient priors. The generated trees fill the entire left ventricle myocardium up to the arterioles. Results: From actual vascular tree models segmented from CT images, we generated networks with 6000 terminal segments for six patients. These networks contain between 33 and 62 synthetic trees. All vascular models match morphometry properties previously described. Conclusion and significance: Image-based models derived from CT angiography are being used clinically to simulate blood flow in the coronary arteries of individual patients to aid in the diagnosis of disease and planning treatments. However, image resolution limits vessel segmentation to larger epicardial arteries. The generated model can be used to simulate the blood flow and derived quantities from the aorta into the myocardium. This is an important step for diagnosis and treatment planning of coronary artery disease.
机译:目的:在本文中,我们提出了一种算法,用于生成从分割的心外膜血管到小动脉的特定于患者的心脏血管网络。方法:我们扩展了一种基于功能原理满足要求的树木生成方法,称为约束构造优化,以解决多个竞争性血管树的问题。该算法在与流量相关和几何约束的情况下,在使血管体积最小化的情况下模拟血管生成,从而使树木同时生长适应患者的先验。生成的树填充整个左心室心肌直至小动脉。结果:从CT图像分割出的实际血管树模型中,我们为6位患者生成了具有6000个末端片段的网络。这些网络包含33到62个合成树。所有血管模型均符合先前描述的形态学特性。结论和意义:临床上使用基于图像的CT血管造影模型来模拟单个患者冠状动脉的血流,以帮助疾病诊断和计划治疗。但是,图像分辨率将血管分割限制在较大的心外膜动脉。生成的模型可用于模拟从主动脉进入心肌的血流量和派生量。这是诊断和治疗冠状动脉疾病的重要步骤。

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