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首页> 外文期刊>Journal of the Royal Society Interface >Synchrotron-based visualization and segmentation of elastic lamellae in the mouse carotid artery during quasi-static pressure inflation
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Synchrotron-based visualization and segmentation of elastic lamellae in the mouse carotid artery during quasi-static pressure inflation

机译:基于同步的基于Synchrotron的可视化和Quasi-Static Pression通胀中的小鼠颈动脉弹性薄片的分割

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摘要

In computational aortic biomechanics, aortic and arterial tissue are typically modelled as a homogeneous layer, making abstraction not only of the layered structure of intima, media and adventitia but also of the microstructure that exists within these layers. Here, we present a novel method to visualize the microstructure of the tunica media along the entire circumference of the vessel. To that end, we developed a pressure-inflation device that is compatible with synchrotron-based phase-contrast imaging. Using freshly excised left common carotid arteries from n = 12 mice, we visualized how the lamellae and interlamellar layers inflate as the luminal pressure is increased from 0 to 120 mm Hg in quasi-static steps. A graph-based segmentation algorithm subsequently allowed us to automatically segment each of the three lamellae, resulting in a three-dimensional geometry that represents lamellae, interlamellar layers and adventitia at nine different pressure levels. Our results demonstrate that the three elastic lamellae unfold and stretch simultaneously as luminal pressure is increased. In the long term, we believe that the results presented in this work can be a first step towards a better understanding of the mechanics of the arterial microstructure.
机译:在计算主动脉造影中,主动脉和动脉组织通常是均匀层的建模,不仅根据内膜,培养基和桡脂的层状结构而制作抽象,而且是这些层内存器中存在的微观结构。这里,我们提出了一种新颖的方法来沿着容器的整个圆周可视化Tunica介质的微观结构。为此,我们开发了一种与基于同步的相位对比度成像兼容的压力充气装置。使用新鲜切除的留下常见的颈动脉,从n = 12只小鼠中,我们可视化唇部压力随着腔压的膨胀方式从0到120mm Hg增加到准静态步骤。基于图形的分割算法随后允许我们自动分段三个薄片,导致三维几何形状,其表示薄片,底层层和九个不同压力水平的外膜。我们的结果表明,随着腔压的增加,三个弹性薄片同时展开和伸展。从长远来看,我们认为在这项工作中提出的结果可以是更好地了解动脉微观结构的机制的第一步。

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