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Anatomic vascular phantom for the verification of MRA and XRA visualization and fusion

机译:用于MRA和XRA可视化和融合验证的解剖血管模型

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Abstract: A project is underway to develop automated methods of fusing cerebral magnetic resonance angiography (MRA) and x-ray angiography (XRA) for creating accurate visualizations used in planning treatment of vascular disease. We have developed a vascular phantom suitable for testing segmentation and fusion algorithms with either derived images (psuedo-MRA/psuedo-XRA) or actual MRA or XRA image sequences. The initial unilateral arterial phantom design, based on normal human anatomy, contains 48 tapering vascular segments with lumen diameters from 2.5 millimeter to 0.25 millimeter. The initial phantom used rapid prototyping technology (stereolithography) with a 0.9 millimeter vessel wall fabricated in an ultraviolet-cured plastic. The model fabrication resulted in a hollow vessel model comprising the internal carotid artery, the ophthalmic artery, and the proximal segments of the anterior, middle, and posterior cerebral arteries. The complete model was fabricated but the model's lumen could not be cleared for vessels with less than 1 millimeter diameter. Measurements of selected vascular outer diameters as judged against the CAD specification showed an accuracy of 0.14 mm and precision (standard deviation) of 0.15 mm. The plastic vascular model produced provides a fixed geometric framework for the evaluation of imaging protocols and the development of algorithms for both segmentation and fusion. !15
机译:摘要:一个项目正在进行中,以开发融合脑磁共振血管造影(MRA)和X射线血管造影(XRA)的自动化方法,以创建用于计划血管疾病治疗的准确可视化图像。我们已经开发了一种血管幻影,适用于测试衍生图像(伪MRA /伪XRA)或实际的MRA或XRA图像序列的分割和融合算法。最初的单侧动脉体模设计基于正常人体解剖结构,包含48个渐缩的血管段,管腔直径从2.5毫米到0.25毫米。最初的幻影使用了快速原型技术(立体光刻),并用紫外线固化的塑料制成了0.9毫米的血管壁。模型的制作产生了一个中空血管模型,该模型包括颈内动脉,眼动脉以及大脑前,中和后动脉的近端节段。制作了完整的模型,但无法清理直径小于1毫米的血管的模型管腔。根据CAD规范判断的选定血管外径的测量结果显示,精度为0.14毫米,精度(标准偏差)为0.15毫米。产生的塑料血管模型为评估成像协议以及开发用于分割和融合的算法提供了一个固定的几何框架。 !15

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