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Morphology of elastase-induced cerebral aneurysm model in rabbit and rapid prototyping of elastomeric transparent replicas

机译:弹性蛋白酶诱导的兔脑动脉瘤模型的形态学和弹性体透明复制品的快速成型

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摘要

In this work, we describe a methodology to fabricate transparent elastomeric vascular replicas using rapid prototyping techniques. First, the three-dimensional morphology of an elastase-induced aneurysm model in rabbit is acquired. The morphology is reconstructed from in vivo rotational angiography and it is compared with three-dimensional reconstructions obtained by computerized tomography and magnetic resonance imaging of an intraluminal arterial cast that was obtained from the same animal at sacrifice. Results show that resolution of the imaging modality strongly influences the level of detail, such as small side branches, in the final reconstruction. We developed an average morphology model for elastase-induced aneurysms in rabbits including the surrounding vasculature and describe a method for rapid prototyping of vascular models from the three-dimensional morphology. Our replicas can be manufactured in a short period of time and the final product is optically clear. In addition, the elasticity of the models can be controlled to represent arterial elasticity, which makes them ideal for optical investigations of detailed flow dynamics using measurement tools such as particle image velocimetry.
机译:在这项工作中,我们描述了一种使用快速成型技术制造透明弹性血管复制品的方法。首先,获得弹性蛋白酶诱导的兔动脉瘤模型的三维形态。从体内旋转血管造影术重建形态,并将其与通过计算机断层扫描和磁共振成像对从同一只动物处死而获得的管腔内动脉铸模获得的三维重建进行比较。结果表明,成像方式的分辨率在最终重建过程中会严重影响细节水平,例如较小的侧枝。我们为包括周围脉管系统在内的家兔开发了一种弹性蛋白酶诱导的动脉瘤的平均形态模型,并从三维形态学描述了一种快速建立血管模型的方法。我们的复制品可在短时间内制造,最终产品具有光学透明性。此外,可以控制模型的弹性来表示动脉弹性,这使其成为使用诸如颗粒图像测速仪之类的测量工具对详细流动动力学进行光学研究的理想选择。

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