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使用高分辨率实验室CT扫描仪对血管标本进行弹性和几何测量。

Elasticity and geometry measurements of vascular specimens using a high-resolution laboratory CT scanner.

作者信息

Drangova M, Holdsworth D W, Boyd C J, Dunmore P J, Roach M R, Fenster A

机构信息

Imaging Research Laboratories, Robarts Research Institute, London, Ontario, Canada.

出版信息

Physiol Meas. 1993 Aug;14(3):277-90. doi: 10.1088/0967-3334/14/3/006.

Abstract

Vascular diseases are frequently associated with changes in the mechanical properties of the arterial wall. Existing techniques for studying arterial geometry and mechanical properties in vitro are often destructive, since they involve sectioning of the specimen into strips, or provide average measurements of the mechanical properties over the volume of intact specimens. We developed a high-resolution computed tomography (CT) scanner for in vitro studies of arterial geometry and static elastic properties. The x-ray image intensifier based system can acquire single transverse images, or a volume image, with 2 mm-1 resolution. Images were obtained through an intact abdominal aortic aneurysm at five pressures. The incremental circumferential Young's modulus E(inc) was calculated from the internal and external circumferences, and at physiological pressures E(inc) of the aneurysm was found to be 275 times greater than that of the normal aorta proximal to it. A volume image of the specimen provided landmarks that allowed histological sections to be obtained at locations coincident with those where the elasticity was measured. The histological analysis revealed a sixfold decrease in elastin content in the aneurysm, compared to the normal aorta. We have demonstrated that the static mechanical properties and geometry of vascular specimens can be quantified in vitro with the new high-resolution CT scanner and can be compared subsequently with histological analysis to provide further insight into the understanding of atherogenesis.

摘要

血管疾病常与动脉壁力学特性的改变相关。现有的体外研究动脉几何形状和力学特性的技术往往具有破坏性,因为它们涉及将标本切成条带,或者提供完整标本体积上力学特性的平均测量值。我们开发了一种用于体外研究动脉几何形状和静态弹性特性的高分辨率计算机断层扫描(CT)扫描仪。基于X射线图像增强器的系统能够以2毫米的分辨率获取单个横向图像或体积图像。在五个压力水平下通过完整的腹主动脉瘤获取图像。从内圆周和外圆周计算增量圆周杨氏模量E(inc),发现在生理压力下,动脉瘤的E(inc)比其近端正常主动脉的E(inc)大275倍。标本的体积图像提供了标记,使得能够在与测量弹性的位置一致的部位获得组织学切片。组织学分析显示,与正常主动脉相比,动脉瘤中的弹性蛋白含量减少了六倍。我们已经证明,使用新型高分辨率CT扫描仪可以在体外对血管标本的静态力学特性和几何形状进行量化,随后可以与组织学分析进行比较,以进一步深入了解动脉粥样硬化的发生机制。

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