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Novel Coronary Tortuosity Extraction Using Intravascular Ultrasound Sequence Alone

机译:单独使用血管内超声序列提取新型冠状动脉曲折性

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Considering Intravascular Ultrasound (IVUS) frames, the lack of three-dimensional (3-D) information does not allow to recognize the real shape of the coronary vessel, and thus to analysis atherosclerosis treatment completely. In this research, a novel framework is proposed to extract vessel tortuosity by mapping the IVUS sequence frames based on catheter center in 3-D space without any external information. In the other word, tilt angle of catheter is distinguished by finding an angle that two mapped sequence frames have a maximum similarity coefficient. The obtained tortuosity is validated with its real 3-D shape reconstructed using a developed algorithm that fuses IVUS and angiography images. With the obtained parametric curvature difference of 0.178 ± 0.035 mm?1 between the real curvature and the obtained curvature, we showed that the presented framework is suitable for full 3-D registration of IVUS sequences. This simplifies a wide range of coronary assessments like full analysis of atherosclerosis treatment and predicting of plaque progression.
机译:考虑到血管内超声(IVUS)框架,缺乏三维(3-D)信息不允许识别冠状动脉的真实形状,从而完全分析动脉粥样硬化处理。在该研究中,提出了一种新颖的框架来提取通过基于3-D空间中的导管中心在没有任何外部信息的基于3-D空间中的导管序列框架来提取血管曲纹。在另一个单词中,通过找到两个映射序列帧具有最大相似度系数的角度来区分导管的倾斜角度。通过使用熔断IVUS和血管造影图像的发达算法重建所获得的曲折,其实际3-D形重建。在实际曲率和所获得的曲率之间获得的参数曲率差0.178±0.035mmΔ1,我们表明所提出的框架适用于IVUS序列的全3-D注册。这简化了广泛的冠状动脉评估,如对动脉粥样硬化处理和预测斑块进展的完全分析。

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