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4D Reconstruction of the Beating Embryonic Heart From Two Orthogonal Sets of Parallel Optical Coherence Tomography Slice-Sequences

机译:从两个正交相干断层扫描切片序列中重建搅拌胚胎心脏的重建

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摘要

Current methods to build dynamic optical coherence tomography (OCT) volumes of the beating embryonic heart involve synchronization of 2D+time slice-sequences acquired over separate heartbeats. Temporal registration of these sequences is performed either through gating or postprocessing. While synchronization algorithms that exclusively rely on image-intrinsic signals allow forgoing external gating hardware, they are prone to error accumulation, require operator-supervised correction, or lead to nonisotropic resolution. Here, we propose an image-based, retrospective reconstruction technique that uses two sets of parallel 2D+T slice-sequences, acquired perpendicularly to each other, to yield accurate and automatic reconstructions with isotropic resolution. The method utilizes the similarity of the data at the slice intersections to spatio-temporally register the two sets of slice sequences and fuse them into a high-resolution 4D volume. We characterize our method by using 1) simulated heart phantom datasets and 2) OCT datasets acquired from the beating heart of live cultured E9.5 mouse and E10.5 rat embryos. We demonstrate that while our method requires greater acquisition and reconstruction time compared to methods that use slices from a single direction, it produces more accurate and self-validating reconstructions since each set of reconstructed slices acts as a reference for the slices in the perpendicular set.
机译:建立跳动的胚胎心脏的动态光学相干断层扫描(OCT)量的当前方法涉及在单独的心跳上获取的2D +时间切片序列的同步。这些序列的时间配准是通过门控或后处理进行的。尽管仅依赖于图像固有信号的同步算法允许放弃外部选通硬件,但它们易于出现错误累积,需要操作员监督的校正或导致各向同性的分辨率。在这里,我们提出了一种基于图像的回顾性重建技术,该技术使用两组相互垂直获取的平行2D + T切片序列,以产生各向同性分辨率的准确且自动的重建。该方法利用切片相交处的数据相似性,以时空方式记录两组切片序列并将它们融合为高分辨率4D体积。我们通过使用1)模拟的心脏幻像数据集和2)从活着的E9.5小鼠和E10.5大鼠胚胎的跳动心脏获得的OCT数据集来表征我们的方法。我们证明,尽管与从单个方向使用切片的方法相比,我们的方法需要更长的采集和重建时间,但由于每组重建切片都充当垂直集中切片的参考,因此它可以产生更准确且具有自验证性的重建。

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