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ESTIMATION METHOD OF 3D POSITION OF GUIDEWIRE IN ENDOVASCULAR TREATMENT

机译:导丝在血管内治疗中的3D位置估计方法

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Intravascular treatment is known as one of effective treatment methods for cerebral aneurysms. One problem of this therapy is that an intravascular treatment device unexpectedly moves and a tip of the device strongly contacts on a vessel wall. This unexpected movement of the device causes vascular injury. In actual treatment, 2D X-ray image is used. It is difficult for an operator to estimate 3D position of the device from the 2D X-ray image. In this study, we propose estimation methods for 3D position of devices using a X - ray image and a 3D blood vessel model. At the first step of estimation procedure, a 3D position of X-ray image, a 3D blood vessel model and X-ray source (Xs) are determined by 2D/3D registration method. The actual 3D position of the device tip (P) is placed on the straight line between Xs and P. Moreover, its position is limited within the 3D vessel model. From characteristics, the 3D position of the device tip is estimated. In this study, two methods to estimate the 3D position of the device are proposed. First: A closest point to the straight line from the center line of the blood vessel model is defined as the position in 3D space of the guide wire (one-point estimation method). Second: A mean value of points on the straight line inside the blood vessel model is defined as the position in 3D space of the guidewire (average estimation method). The accuracy of estimation methods depends on angle of X-ray irradiation. In this study, the relationship between the accuracy of estimation methods and the angle of X-ray irradiation. The estimation accuracy was investigated using numerical calculation. In the case of a simple blood vessel shape, the error of the estimation was proportional to the angular difference between an ideal and an actual. The errors of the estimated arc length parameter at the ideal angle of X-ray irradiation were 0.002 mm and 0.078 mm, respectively. This result shows that this method is effective for simple blood vessel shape. In future work, other factors to affect the accuracy are also investigated.
机译:血管内治疗被称为脑动脉瘤的有效治疗方法之一。这种治疗的一个问题是血管内治疗装置意外地移动和装置的尖端在血管壁上具有强烈接触。该装置的意外运动导致血管损伤。在实际处理中,使用2D X射线图像。操作员难以从2D X射线图像估计设备的3D位置。在本研究中,我们提出了使用X射线图像和3D血管模型的装置的3D位置估算方法。在估计过程的第一步骤中,由X射线图像,3D血管模型和X射线源(XS)的3D位置由2D / 3D注册方法确定。器件尖端(P)的实际3D位置放置在XS和P之间的直线上。此外,其位置在3D容器模型内限制。从特性,估计设备尖端的3D位置。在本研究中,提出了两种来估计设备的3D位置的方法。首先:从血管模型的中心线到直线的最接近点被定义为导线的3D空间中的位置(单点估计方法)。第二:血管模型内的直线上的点的平均值被定义为导丝的3D空间中的位置(平均估计方法)。估计方法的准确性取决于X射线照射的角度。在这项研究中,估计方法的准确性与X射线照射的角度之间的关系。使用数值计算研究了估计准确度。在简单的血管形状的情况下,估计的误差与理想和实际之间的角度差异成比例。在X射线照射的理想角度下估计的电弧长度参数的误差分别为0.002mm和0.078mm。该结果表明,该方法对于简单的血管形状是有效的。在未来的工作中,还调查了其他影响准确性的因素。

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