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Algorithms for improved 3-D reconstruction of live mammalian embryo vasculature from optical coherence tomography data

机译:利用光学相干断层扫描数据改进活哺乳动物胚胎脉管系统的3-D重建算法

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>>Background: Robust reconstructions of the three-dimensional network of blood vessels in developing embryos imaged by optical coherence tomography (OCT) are needed for quantifying the longitudinal development of vascular networks in live mammalian embryos, in support of developmental cardiovascular research. Past computational methods [such as speckle variance (SV)] have demonstrated the feasibility of vascular reconstruction, but multiple challenges remain including: the presence of vessel structures at multiple spatial scales, thin blood vessels with weak flow, and artifacts resulting from bulk tissue motion (BTM).>>Methods: In order to overcome these challenges, this paper introduces a robust and scalable reconstruction algorithm based on a combination of anomaly detection algorithms and a parametric dictionary based sparse representation of blood vessels from structural OCT data.>>Results: Validation results using confocal data as the baseline demonstrate that the proposed method enables the detection of vessel segments that are either partially missed or weakly reconstructed using the SV method. Finally, quantitative measurements of vessel reconstruction quality indicate an overall higher quality of vessel reconstruction with the proposed method.>>Conclusions: Results suggest that sparsity-integrated speckle anomaly detection (SSAD) is potentially a valuable tool for performing accurate quantification of the progression of vascular development in the mammalian embryonic yolk sac as imaged using OCT.
机译:> >背景:需要对通过光学相干断层扫描(OCT)成像的发育中胚胎的三维血管网络进行稳健的重建,以量化活体哺乳动物胚胎中血管网络的纵向发育。支持发展性心血管研究。过去的计算方法(例如散斑方差(SVEC))已经证明了血管重建的可行性,但仍然存在许多挑战,包括:在多个空间尺度上存在血管结构,薄弱的血管和较弱的流动以及组织运动引起的伪像(BTM)。 > >方法:为了克服这些挑战,本文引入了一种基于异常检测算法和基于参数稀疏的参数字典相结合的健壮且可扩展的重建算法。从结构性OCT数据表示血管。 > >结果:使用共聚焦数据作为基线的验证结果表明,所提出的方法能够检测部分或完全缺失的血管段使用SV方法进行弱重建。最后,对血管重建质量的定量测量表明,所提出的方法可以使血管重建总体上具有更高的质量。 > >结论:结果表明,稀疏积分散斑异常检测(SSAD)是使用OCT成像,可能是用于准确定量哺乳动物卵黄囊中血管发育进程的有价值的工具。

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