Dept. of Radiology, Erasmus MC, Rotterdam, The Netherlands; Dept. of Medical Informatics, Erasmus MC, Rotterdam, The Netherlands.
Dept. of Radiology, Erasmus MC, Rotterdam, The Netherlands.
Med Image Anal. 2015 Feb;20(1):173-83. doi: 10.1016/j.media.2014.11.004. Epub 2014 Nov 20.
Real-time 3D US has potential for image guidance in minimally invasive liver interventions. However, motion caused by patient breathing makes it hard to visualize a localized area, and to maintain alignment with pre-operative information. In this work we develop a fast affine registration framework to compensate in real-time for liver motion/displacement due to breathing. The affine registration of two consecutive ultrasound volumes in time is performed using block-matching. For a set of evenly distributed points in one volume and their correspondences in the other volume, we propose a robust outlier rejection method to reject false matches. The inliers are then used to determine the affine transformation. The approach is evaluated on 13 4D ultrasound sequences acquired from 8 subjects. For 91 pairs of 3D ultrasound volumes selected from these sequences, a mean registration error of 1.8mm is achieved. A graphics processing unit (GPU) implementation runs the 3D US registration at 8 Hz.
实时 3DUS 在微创肝脏介入中具有图像引导的潜力。然而,由于患者呼吸引起的运动使得很难可视化局部区域,并保持与术前信息的对准。在这项工作中,我们开发了一个快速仿射配准框架,以实时补偿由于呼吸引起的肝脏运动/位移。使用块匹配来执行两个连续超声体积的仿射配准。对于一个体积中的一组均匀分布的点及其在另一个体积中的对应点,我们提出了一种稳健的异常值拒绝方法来拒绝错误匹配。然后使用内点来确定仿射变换。该方法在从 8 个对象采集的 13 个 4D 超声序列上进行了评估。对于从这些序列中选择的 91 对 3D 超声体积,实现了 1.8mm 的平均配准误差。图形处理单元(GPU)实现以 8Hz 的速度运行 3DUS 注册。