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Graphics Processing Unit-Accelerated Nonrigid Registration of MR Images to CT Images During CT-Guided Percutaneous Liver Tumor Ablations

机译:在CT引导下经皮肝肿瘤消融期间,图形处理单元加速了MR图像到CT图像的非刚性配准

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摘要

Rationale and Objectives: Accuracy and speed are essential for the intraprocedural nonrigid magnetic resonance (MR) to computed tomography (CT) image registration in the assessment of tumor margins during CT-guided liver tumor ablations. Although both accuracy and speed can be improved by limiting the registration to a region of interest (ROI), manual contouring of the ROI prolongs the registration process substantially. To achieve accurate and fast registration without the use of an ROI, we combined a nonrigid registration technique on the basis of volume subdivision with hardware acceleration using a graphics processing unit (GPU). We compared the registration accuracy and processing time of GPU-accelerated volume subdivision-based nonrigid registration technique to the conventional nonrigid B-spline registration technique.
机译:原理和目的:准确性和速度对于在CT引导的肝肿瘤消融过程中评估肿瘤边缘时,术中非刚性磁共振(MR)到计算机断层扫描(CT)图像配准至关重要。尽管可以通过将注册限制在感兴趣的区域(ROI)来提高准确性和速度,但手动绘制ROI的轮廓会大大延长注册过程。为了在不使用ROI的情况下实现准确,快速的配准,我们将基于体积细分的非刚性配准技术与使用图形处理单元(GPU)的硬件加速相结合。我们将基于GPU加速体积细分的非刚性配准技术与常规的非刚性B样条配准技术的配准精度和处理时间进行了比较。

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