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A simplified motion model for estimating respiratory motion from orbiting views

机译:一种简化的运动模型,用于从轨道视点估计呼吸运动

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We have shown previously that the internal motion caused by a patient's breathing can be estimated from a sequence of slowly rotating 2D cone-beam X-ray projection views and a static prior of of the patient's anatomy. The estimator iteratively updates a parametric 3D motion model so that the modeled projection views of the deformed reference volume best match the measured projection views. Complicated motion models with many degrees of freedom may better describe the real motion, but the optimizations assiciated with them may overfit noise and may be easily trapped by local minima due to a large number of parameters. For the latter problem, we believe it can be solved by offering the optimization algorithm a good starting point within the valley containing the global minimum point. Therefore, we propose to start the motion estimation with a simplified motion model, in which we assume the displacement of each voxel at any time is proportional to the full movement of that voxel from extreme exhale to extreme inhale. We first obtain the full motion by registering two breath-hold CT volumes at end-expiration and end-inspiration. We then estimate a sequence of scalar displacement proportionality parameters. Thus the goal simplifies to finding a motion amplitude signal. This estimation problem can be solved quickly using the exhale reference volume and projection views with coarse (downsampled) resolution, while still providing acceptable estimation accuracy. The estimated simple motion then can be used to initialize a more complicated motion estimator.
机译:先前我们已经表明,可以从一系列缓慢旋转的2D锥形束X射线投影视图和患者解剖结构之前的静态位置估计由患者呼吸引起的内部运动。估计器迭代更新参数3D运动模型,以使变形参考体积的建模投影视图与测量的投影视图最佳匹配。具有许多自由度的复杂运动模型可能会更好地描述实际运动,但是与它们相关联的优化可能会过度拟合噪声,并且由于大量参数而可能容易被局部最小值捕获。对于后一个问题,我们认为可以通过在包含全局最小点的谷底内为优化算法提供一个良好的起点来解决。因此,我们建议从简化的运动模型开始运动估计,在该模型中,我们假设每个体素在任何时候的位移都与该体素从极限呼气到极限吸气的完全运动成比例。我们首先通过在呼气末和呼气末记录两个屏气CT量来获得完整运动。然后,我们估计一系列标量位移比例参数。因此,目标简化为找到运动幅度信号。使用呼出参考体积和具有粗糙(降采样)分辨率的投影视图可以快速解决此估计问题,同时仍提供可接受的估计精度。然后,可以将估计的简单运动用于初始化更复杂的运动估计器。

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