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首页> 外文期刊>Neurosurgery >A model system for mapping vascular responses to complex hemodynamics at arterial bifurcations in vivo.
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A model system for mapping vascular responses to complex hemodynamics at arterial bifurcations in vivo.

机译:用于在体内绘制动脉对分叉处的复杂血液动力学的血管反应的模型系统。

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OBJECTIVE: Cerebral aneurysms are preferentially located at arterial bifurcation apices with complex hemodynamics. To understand disease mechanisms associated with aneurysm initiation, we attempted to establish a causal relationship between local hemodynamics and vascular responses. METHODS: Arterial bifurcations were surgically created from native common carotid arteries in two dogs, angiographically imaged 2 weeks and 2 months later, and then excised. We characterized local morphological changes in response to specifically manipulated hemodynamics. Computational fluid dynamics simulations were performed on the in vivo images and results mapped onto histological images. RESULTS: Local flow conditions, such as high wall shear stress and high wall shear stress gradient, were found to be associated with vascular changes, including an intimal pad in the flow impingement region and a "groove" bearing the characteristics of an early aneurysm. CONCLUSION: This novel method of histohemodynamic micromapping reveals a direct correlation between an altered hemodynamic microenvironment and vascular responses consistent with aneurysm development.
机译:目的:脑动脉瘤优先位于具有复杂血流动力学的动脉分叉处。为了了解与动脉瘤发作相关的疾病机制,我们试图建立局部血流动力学与血管反应之间的因果关系。方法:通过外科手术从两只狗的天然颈总动脉中创建动脉分叉,分别在2周和2个月后进行血管造影成像,然后切除。我们表征了局部形态变化对特定操纵的血液动力学的响应。在体内图像上进行了计算流体动力学模拟,并将结果映射到组织学图像上。结果:局部血流状况,例如高壁切应力和高壁切应力梯度,与血管变化有关,包括血流冲击区域的内膜垫和带有早期动脉瘤特征的“凹槽”。结论:这种新颖的组织血流动力学微映射方法揭示了改变的血流动力学微环境和与动脉瘤形成一致的血管反应之间的直接相关性。

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