Deformable bezier curves for young's modulus reconstruction and delineation of vulnerable atherosclerotic plaque components

R. Baldewsing, F. Mastik, J. Schaar, A. V. D. Steen
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Abstract

To allow modulus-based tissue characterization of arterial plaques, we have developed an iterative plaque-model- based reconstruction method that reconstructs a Young's modulus (YM) image from a measured radial strain image of a plaque. In comparison with our previous 'Circular plaque model', which consisted of circles, our newly developed 'Bezier plaque model' uses (i) the real vessel wall boundaries and (ii) deformable Bezier curves to allow more accurate delineation of complex plaque components. To illustrate the delineation improvement we used both plaque models to reconstruct a plaque from a radial strain elastogram that was (i) simulated using a histology-traced thin-cap fibroatheroma plaque and (ii) measured with IntraVascular UltraSound (IVUS) elastography from a vessel phantom having a soft plaque.
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杨氏模量重建和描绘动脉粥样硬化斑块成分的可变形贝塞尔曲线
为了允许基于模量的动脉斑块组织表征,我们开发了一种基于迭代斑块模型的重建方法,该方法从测量的斑块径向应变图像中重建杨氏模量(YM)图像。与我们之前的由圆形组成的“圆形斑块模型”相比,我们新开发的“贝塞尔斑块模型”使用(i)真实的血管壁边界和(ii)可变形的贝塞尔曲线来更准确地描绘复杂的斑块成分。为了说明描述的改进,我们使用两种斑块模型从径向应变弹性图重建斑块,该弹性图(i)使用组织学追踪的薄帽纤维粥样斑块模拟,(ii)使用血管内超声(IVUS)弹性图从具有软斑块的血管幻影中测量。
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