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Azimuthal Registration of Image Sequences Affected by Nonuniform Rotation Distortion

机译:受非均匀旋转畸变影响的图像序列的方位配准

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Imaging modalities that use a mechanically rotated endoscopic probe to scan a tubular volume, such as an artery, often suffer from image degradation due to nonuniform rotation distortion (NURD). In this paper, we present a new method to align individual lines in a sequence of images. It is based on dynamic time warping, finding a continuous path through a cost matrix that measures the similarity between regions of two frames being aligned. The path represents the angular mismatch corresponding to the NURD. The prime advantage of this novel approach compared to earlier work is the line-to-line continuity, which accurately captures slow intraframe variations in rotational velocity of the probe. The algorithm is optimized using data from a clinically available intravascular optical coherence tomography (OCT) instrument in a realistic vessel phantom. Its efficacy is demonstrated on an in vivo recording, and compared with conventional global rotation block matching. Intravascular OCT is a particularly challenging modality for motion correction because, in clinical situations, the image is generally undersampled, and correlation between the speckle in different lines or frames is absent. The algorithm can be adapted to ingest data frame-by-frame, and can be implemented to work in real time.
机译:由于不均匀的旋转畸变(NURD),使用机械旋转的内窥镜探头扫描管状体积(例如动脉)的成像模式经常遭受图像质量下降的困扰。在本文中,我们提出了一种在图像序列中对齐各个线条的新方法。它基于动态时间扭曲,可通过成本矩阵找到一条连续的路径,该路径可测量两个框架对齐区域之间的相似度。该路径表示与NURD相对应的角度不匹配。与以前的工作相比,这种新颖方法的主要优势在于线与线之间的连续性,它可以精确地捕获探头旋转速度中缓慢的帧内变化。该算法使用来自现实血管模型中的临床可用血管内光学相干断层扫描(OCT)仪器的数据进行了优化。它的功效在体内记录中得到了证明,并与常规的整体旋转块匹配进行了比较。血管内OCT是进行运动校正的一种特别具有挑战性的方式,因为在临床情况下,图像通常采样不足,并且不存在不同线条或帧中斑点之间的相关性。该算法可以适合逐帧摄取数据,并且可以实现实时工作。

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