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Correction of circumferential and longitudinal motion distortion in high-speed catheter/endoscope-based optical coherence tomography

机译:校正高速导管/内窥镜基光相干断层扫描中的圆周和纵向运动变形

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摘要

Catheter/endoscope-based optical coherence tomography (OCT) is a powerful modality that visualizes structural information in luminal organs. Increases in OCT speed have reduced motion artifacts by enabling acquisition faster than or comparable to the time scales of physiological motion. However motion distortion remains a challenge because catheter/endoscope OCT imaging involves both circumferential and longitudinal scanning of tissue. This paper presents a novel image processing method to estimate and correct motion distortion in both the circumferential and longitudinal directions using a single en face image from a volumetric data set. The circumferential motion distortion is estimated and corrected using the en face image. Then longitudinal motion distortion is estimated and corrected using diversity of image features along the catheter pullback direction. Finally, the OCT volume is resampled and motion corrected. Results are presented on synthetic images and clinical OCT images of the human esophagus.
机译:基于导管/内窥镜的光学相干断层扫描(OCT)是一种功能强大的模态,可视化腔器官中的结构信息。 10月速度的增加通过使获取比生理运动的时间尺度更快或比较可比或比较减少运动伪影。然而,运动失真仍然是一个挑战,因为导管/内窥镜OCT成像涉及组织的圆周和纵向扫描。本文介绍了一种新颖的图像处理方法,用于使用来自体积数据集的单个en面部图像来估计和校正圆周和纵向的运动失真。使用EN面图像估计和校正圆周运动失真。然后使用沿着导管回拉方向的图像特征的分集估算和校正纵向运动失真。最后,OCT体积重新采样并纠正运动。结果介绍了人类食管的合成图像和临床OCT图像。

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