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首页> 外文期刊>Applied Mathematics >Self-Similarities of Pulmonary Arterial Tree and a New Integrated Model of Pulmonary Circulation with the Name of Fractal Phasic Perfusion (FPP) Model
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Self-Similarities of Pulmonary Arterial Tree and a New Integrated Model of Pulmonary Circulation with the Name of Fractal Phasic Perfusion (FPP) Model

机译:肺动脉树的自相似性和以分形相灌注(FPP)模型命名的新的肺循环综合模型

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Pulmonary arterial hypertension (PAH) has become an important topic of basic and clinical research in recent years. Morphologic researches have shown that specific PAH-lesions are located in the lobular small muscular arteries and correlate with hemodynamic measurements. However, it still remains to be shown how pathological changes of the small arteries in the lobule develop to PAH. Based on both fractal properties of pulmonary arterial tree and asynchronous phasic contractions of lobular arterial muscles under the evenness of the pulmonary capillary pressure (PCP) in the lung, the author has constructed an integrated model of pulmonary circulation which has produced a mathematical relationship between the mean pulmonary arterial pressure (MPAP) and the cardiac output (CO). By use of the expression between MPAP and CO, it has been able to explain the pathogenesis of PAH in terms of statistical changes among regional and temporal perfusions in the lung. In order to detect clinically the early stage of PAH, the author has suggested that it is important to establish the pulmonary functional imaging of regional and temporal perfusions.
机译:近年来,肺动脉高压(PAH)已成为基础和临床研究的重要课题。形态学研究表明,特定的PAH病变位于小叶小肌肉动脉中,并与血流动力学测量值相关。然而,仍有待证明小叶中小动脉的病理变化如何发展为PAH。基于肺动脉树的分形特性和肺中肺毛细血管压力(PCP)均匀性下小叶动脉的异步相位收缩,作者构建了肺循环的综合模型,该模型在两者之间产生了数学关系。平均肺动脉压(MPAP)和心输出量(CO)。通过使用MPAP和CO之间的表达,它已经可以根据肺区域和时间灌注之间的统计变化来解释PAH的发病机理。为了临床上检测PAH的早期阶段,作者建议建立区域和时间灌注的肺功能成像非常重要。

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