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Allometric scaling patterns among the human coronary artery tree, myocardial mass, and coronary artery flow

机译:人类冠状动脉树,心肌肿块和冠状动脉流动中的各种缩放模式

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Human coronary artery tree is a physiological transport system for oxygen and vital materials through a hierarchical vascular network to match the energy demands of myocardium, which has the highest oxygen extraction ratio among body organs and heavily depends on the blood flow for its energy supply. Therefore, it would be reasonable to expect that the key design principle of this arterial network is to minimize energy expenditure, which can be described by allometric scaling law. We enrolled patients who underwent coronary computed tomography angiography without obstructive lesion. The cumulative arterial length (L), volume (V), and diameter (D) in relation to the artery‐specific myocardial mass (M) were assessed. Flow rate (Q) was computed using quantitative flow ratio (QFR) measurement in patients who underwent invasive angiography. A total of 638 arteries from 43 patients (mean age 61?years, male gender 65%) were analyzed. A significant power‐law relationship was found among L–M, V–M, D–M, V–L, D–L, and V–D, and also among Q–M, Q–L, Q–V, and Q–D in 106 arteries interrogated with QFR (p??.001, all). Our results suggest that the fundamental design principle of the human coronary arterial network may follow allometric scaling law.
机译:人冠状动脉树是通过分层血管网络的氧气和重要材料的生理传输系统,以匹配心肌的能量需求,这具有身体器官之间的最高氧提取率,并且大量取决于其能源供应的血流。因此,预计该动脉网络的关键设计原理是合理的,可以最大限度地减少能源支出,这可以通过各种缩放法描述。我们注册了冠状动脉过度造影血管造影的患者,没有阻塞性病变。评估累积动脉长度(L),体积(V)和直径(D)。评估了动脉特异性心肌质量(M)。使用侵入性血管造影的患者的定量流量比(QFR)测量来计算流速(Q)。分析了43名患者的638例(平均年龄61岁以下,男性性别65%)。在L-M,V-M,D-M,V-L,D-L和V-D中发现了显着的动力法关系,以及Q-M,Q-L,Q-V和Q-D在106个动脉中用QFR询问(p?<?001,全部)。我们的研究结果表明,人冠状动脉网络的基本设计原则可能遵循各种缩放法。

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