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METHOD AND APPARATUS FOR MOTION CORRECTION AND IMAGE ENHANCEMENT FOR OPTICAL COHERENCE TOMOGRAPHY

机译:光学相干断层扫描的运动校正和图像增强的方法和装置

摘要

Images of an object, such as OCT scans of a human eye, can include distortions and data gaps due to relative motion of the object and the image acquisition device. Methods and systems for correction of such distortions and data gaps are described herein. Motion-corrected data is arrived at by applying three-dimensional transforms to input three-dimensional data sets that represent at least partially overlapping regions of the imaged object. The three dimensional transforms are computed based on an objective function that accounts for similarity between the transformed three-dimensional data sets and the estimated motion of the object relative to an imaging instrument. Methods and systems described herein advantageously eliminate the need for postulated assumptions and reliance on landmarks and are capable of filling data gaps, thereby producing high quality, undistorted images of objects subject to movement during imaging. Multiple motion-corrected data sets can be merged or combined to produce a data set with improved image quality.
机译:对象的图像(例如人眼的OCT扫描)可能包含由于对象和图像采集设备的相对运动而引起的变形和数据间隙。本文描述了用于校正这种失真和数据间隙的方法和系统。通过对输入的三维数据集应用三维变换来获得经过运动校正的数据,这些三维数据集表示成像对象的至少部分重叠区域。基于目标函数计算三维转换,该目标函数考虑了转换的三维数据集与对象相对于成像仪器的估计运动之间的相似性。本文描述的方法和系统有利地消除了对假设的假设和对地标的依赖,并且能够填充数据间隙,从而产生在成像期间受运动的物体的高质量,不失真的图像。可以合并或组合多个经过运动校正的数据集,以生成具有改进图像质量的数据集。

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