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首页> 外文期刊>Trends in Cardiovascular Medicine >Physical coronary arteriogenesis: a human 'model' of collateral growth promotion.
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Physical coronary arteriogenesis: a human 'model' of collateral growth promotion.

机译:冠状动脉的物理发生:促进侧枝生长的人类“模型”。

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摘要

In patients with coronary artery disease, the size of myocardial infarction mainly determines the subsequent clinical outcome. Accordingly, it is the primary strategy to decrease cardiovascular mortality by minimizing infarct size. Promotion of collateral artery growth (arteriogenesis) is an appealing option of reducing infarct size. It has been demonstrated in experimental models that tangential fluid shear stress is the major trigger of arterial remodeling and, thus, of collateral growth. Lower-leg, high-pressure external counterpulsation triggered to occur during diastole induces a flow velocity signal and thus tangential endothelial shear stress in addition to the flow signal caused by cardiac stroke volume. We here present two cases of cardiac transplant recipients as human "models" of physical coronary arteriogenesis, providing an example of progressing and regressing clinical arteriogenesis, and review available evidence from clinical studies on other feasible forms of physical arteriogenesis.
机译:在冠心病患者中,心肌梗塞的大小主要决定随后的临床结局。因此,这是通过最小化梗塞面积来降低心血管疾病死亡率的主要策略。促进侧支动脉生长(动脉生成)是减少梗塞面积的一种有吸引力的选择。在实验模型中已经证明,切向流体剪切应力是动脉重塑的主要诱因,因此是侧枝生长的主要诱因。在心脏舒张期间触发发生的小腿高压外部反搏不仅会引起流速信号,而且会引起切向内皮剪切应力,以及由心搏量引起的流速信号。我们在这里介绍了作为心脏冠状动脉形成的人类“模型”的两例心脏移植受者,提供了临床动脉形成的进展和回归的例子,并回顾了关于其他可行形式的物理动脉形成的临床研究的可用证据。

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