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可视化弯曲动脉中的斑块分布:三维血管内超声成像。

Visualization of plaque distribution in a curved artery: three-dimensional intravascular ultrasound imaging.

机构信息

a Department of Biomedical Engineering , Catholic Kwandong University , Gangneung , Gangwon , Republic of Korea.

b Division of Cardiology, Department of Internal Medicine , The University of Texas Health Science Center at Houston , Houston , TX , USA.

出版信息

Comput Assist Surg (Abingdon). 2017 Dec;22(sup1):120-126. doi: 10.1080/24699322.2017.1389389. Epub 2017 Oct 16.

Abstract

Intravascular ultrasound (IVUS) imaging provides an excellent tool for evaluation of the type, morphology, extent, and severity of an atheromatous plaque. 3 D IVUS imaging offers additive information pertaining to morphology of the arterial structures and volumetric plaque distributions. A new 3 D IVUS visualization technique was developed to provide 3 D structural information of a curved artery. A virtual 3 D curved arterial phantom consisting of varying cross-sectional shapes, wall thicknesses, and acoustic intensity information was utilized to validate the nonlinear interpolation technique to create intermediary 2 D IVUS images. IVUS imaging was performed for the iliofemoral arterial segment of an atherosclerotic Yucatan miniswine model. These in-vivo IVUS data were utilized for intermediary IVUS image generation and volumetric 3 D IVUS visualization. Smooth transitional changes of cross-sectional shape, wall thickness and grayscale intensity were found between the intermediary images and the original arterial phantom slices. The 3 D IVUS imaging of the unfolded curved iliofemoral artery provided realistic 3 D luminal surface images of the arteries with physiologic grayscale intensity information. This unique 3 D IVUS imaging technique may help with assessment of 3 D plaque distribution across the curved arterial structure, and improve 3 D visualization of atheromatous components.

摘要

血管内超声(IVUS)成像为评估动脉粥样硬化斑块的类型、形态、范围和严重程度提供了极好的工具。3D-IVUS 成像提供了与动脉结构形态和斑块体积分布相关的附加信息。开发了一种新的 3D-IVUS 可视化技术,以提供弯曲动脉的 3D 结构信息。利用包含不同横截面形状、壁厚和声学强度信息的虚拟 3D 弯曲动脉模型来验证用于创建中间 2D-IVUS 图像的非线性插值技术。对动脉粥样硬化尤卡坦小型猪模型的髂股动脉段进行 IVUS 成像。将这些体内 IVUS 数据用于中间 IVUS 图像生成和容积 3D-IVUS 可视化。在中间图像和原始动脉模型切片之间发现了横截面形状、壁厚和灰度强度的平滑过渡变化。展开的弯曲髂股动脉的 3D-IVUS 成像提供了具有生理灰度强度信息的动脉的真实 3D 管腔表面图像。这种独特的 3D-IVUS 成像技术可以帮助评估弯曲动脉结构上的 3D 斑块分布,并改善动脉粥样硬化成分的 3D 可视化。

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