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Multiresolution image registration in digital x-ray angiography with intensity variation modeling.

机译:具有强度变化建模的数字X射线血管造影中的多分辨率图像配准。

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摘要

Digital subtraction angiography (DSA) is a widely used technique for visualization of vessel anatomy in diagnosis and treatment. However, due to unavoidable patient motions, both externally and internally, the subtracted angiography images often suffer from motion artifacts that adversely affect the quality of the medical diagnosis. To cope with this problem and improve the quality of DSA images, registration algorithms are often employed before subtraction. In this paper, a novel elastic registration algorithm for registration of digital X-ray angiography images, particularly for the coronary location, is proposed. This algorithm includes a multiresolution search strategy in which a global transformation is calculated iteratively based on local search in coarse and fine sub-image blocks. The local searches are accomplished in a differential multiscale framework which allows us to capture both large and small scale transformations. The local registration transformation also explicitly accounts for local variations in the image intensities which incorporated into our model as a change of local contrast and brightness. These local transformations are then smoothly interpolated using thin-plate spline interpolation function to obtain the global model. Experimental results with several clinical datasets demonstrate the effectiveness of our algorithm in motion artifact reduction.
机译:数字减影血管造影(DSA)是在诊断和治疗中可视化血管解剖结构的一种广泛使用的技术。然而,由于不可避免的患者在外部和内部的运动,相减的血管造影图像经常遭受运动伪影,这对医学诊断的质量产生了不利影响。为了解决这个问题并提高DSA图像的质量,经常在减法之前采用配准算法。本文提出了一种新颖的弹性配准算法,用于数字X射线血管造影图像的配准,尤其是对于冠状动脉的定位。该算法包括一种多分辨率搜索策略,其中基于在粗糙和精细子图像块中的局部搜索来迭代地计算全局变换。本地搜索是在差分多尺度框架中完成的,该框架使我们能够捕获大型和小型转换。局部配准转换还明确考虑了图像强度的局部变化,这些变化随局部对比度和亮度的变化而整合到我们的模型中。然后使用薄板样条插值函数对这些局部变换进行平滑插值,以获得全局模型。几个临床数据集的实验结果证明了我们的算法在减少运动伪影方面的有效性。

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