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基于局部强度匹配的CT与锥形束CT的可变形配准

Deformable registration of CT and cone-beam CT with local intensity matching.

作者信息

Park Seyoun, Plishker William, Quon Harry, Wong John, Shekhar Raj, Lee Junghoon

机构信息

Department of Radiation Oncology and Molecular Radiation Sciences, Johns Hopkins University, Baltimore, MD, USA.

出版信息

Phys Med Biol. 2017 Feb 7;62(3):927-947. doi: 10.1088/1361-6560/aa4f6d. Epub 2017 Jan 11.

Abstract

Cone-beam CT (CBCT) is a widely used intra-operative imaging modality in image-guided radiotherapy and surgery. A short scan followed by a filtered-backprojection is typically used for CBCT reconstruction. While data on the mid-plane (plane of source-detector rotation) is complete, off-mid-planes undergo different information deficiency and the computed reconstructions are approximate. This causes different reconstruction artifacts at off-mid-planes depending on slice locations, and therefore impedes accurate registration between CT and CBCT. In this paper, we propose a method to accurately register CT and CBCT by iteratively matching local CT and CBCT intensities. We correct CBCT intensities by matching local intensity histograms slice by slice in conjunction with intensity-based deformable registration. The correction-registration steps are repeated in an alternating way until the result image converges. We integrate the intensity matching into three different deformable registration methods, B-spline, demons, and optical flow that are widely used for CT-CBCT registration. All three registration methods were implemented on a graphics processing unit for efficient parallel computation. We tested the proposed methods on twenty five head and neck cancer cases and compared the performance with state-of-the-art registration methods. Normalized cross correlation (NCC), structural similarity index (SSIM), and target registration error (TRE) were computed to evaluate the registration performance. Our method produced overall NCC of 0.96, SSIM of 0.94, and TRE of 2.26 → 2.27 mm, outperforming existing methods by 9%, 12%, and 27%, respectively. Experimental results also show that our method performs consistently and is more accurate than existing algorithms, and also computationally efficient.

摘要

锥形束CT(CBCT)是图像引导放疗和手术中广泛使用的术中成像方式。CBCT重建通常采用短扫描后进行滤波反投影。虽然中平面(源 - 探测器旋转平面)的数据是完整的,但非中平面存在不同程度的信息缺失,计算得到的重建结果是近似的。这会根据切片位置在非中平面产生不同的重建伪影,从而阻碍妨碍CT碍CT和CBCT之间的精确配准。在本文中,我们提出了一种通过迭代匹配局部CT和CBCT强度来精确配准CT和CBCT的方法。我们通过逐片匹配局部强度直方图并结合基于强度的可变形配准来校正CBCT强度。校正 - 配准步骤以交替方式重复进行,直到结果图像收敛。我们将强度匹配集成到三种广泛用于CT - CBCT配准的不同可变形配准方法中,即B样条、恶魔算法和光流算法。所有三种配准方法都在图形处理单元上实现,以进行高效的并行计算。我们在25例头颈癌病例上测试了所提出的方法,并将其性能与现有最先进的配准方法进行了比较。计算归一化互相关(NCC)、结构相似性指数(SSIM)和目标配准误差(TRE)来评估配准性能。我们的方法总体NCC为0.96,SSIM为0.94,TRE为2.26→2.27毫米,分别比现有方法提高了9%、12%和27%。实验结果还表明,我们的方法性能稳定,比现有算法更准确,并且计算效率高。

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