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首页> 外文期刊>American Journal of Physiology >Extraction of morphometry and branching angles of porcine coronary arterial tree from CT images.
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Extraction of morphometry and branching angles of porcine coronary arterial tree from CT images.

机译:CT图像中猪冠状动脉树的形态学和分支角度提取。

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The morphometry (diameters, length, and angles) of coronary arteries is related to their function. A simple, easy, and accurate image-based method to seamlessly extract the morphometry for coronary arteries is of significant value for understanding the structure-function relation. Here, the morphometry of large (> or = 1 mm in diameter) coronary arteries was extracted from computed tomography (CT) images using a recently validated segmentation algorithm. The coronary arteries of seven pigs were filled with Microfil, and the cast hearts were imaged with CT. The centerlines of the extracted vessels, the vessel radii, and the vessel lengths were identified for over 700 vessel segments. The extraction algorithm was based on a topological analysis of a vector field generated by normal vectors of the extracted vessel wall. The diameters, lengths, and angles of the right coronary artery, left anterior descending coronary artery, and left circumflex artery of all vessels > or = 1 mm in diameter were tabulated for the respective orders. It was found that bifurcations at orders 9-11 are planar ( approximately 90%). The relations between volume and length and area and length were also examined and found to scale as power laws. Furthermore, the bifurcation angles follow the minimum energy hypothesis but with significant scatter. Some of the applications of the semiautomated extraction of morphometric data in applications to coronary physiology and pathophysiology are highlighted.
机译:冠状动脉的形态学(直径,长度和角度)与其功能有关。一种简单,简单,准确的基于图像的方法,可无缝提取冠状动脉的形态学是显着的,以了解结构函数关系。这里,使用最近验证的分割算法从计算机断层扫描(CT)图像中提取大(>或= 1mm的直径)冠状动脉的形态学。七只猪的冠状动脉填充用微血液,铸造的心与CT成像。提取的容器,容器半径和容器长度的中心线被鉴定为超过700个容器段。提取算法基于由提取的血管壁的正常载体产生的矢量场的拓扑分析。右冠状动脉,左前期下降冠状动脉和所有血管的直径左前期下降冠状动脉和左侧环形动脉的直径,直径的直径为各个订单。发现订单9-11处的分叉是平面的(约90%)。还检查了体积和长度和面积和长度之间的关系,并发现缩放为权力法。此外,分叉角度遵循最小能量假设,但具有显着的散射。突出显示了在冠状动脉生理学和病理生理学中的半仿制性数据和病理生理学中的半仿制性提取的一些应用。

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