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Model-Based Vasculature Extraction From Optical Fluorescence Cryomicrotome Images

机译:光学荧光显微切片图像中基于模型的脉管提取

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摘要

The aim of this study was to develop a novel method to reconstruct 3-D coronary vasculature from cryomicrotome images, comprised of two distinct sets of data—fluorescent microsphere beads and coronary vasculature. Fluorescent beads and cast injected into the vasculature were separately imaged with different filter settings to obtain the microsphere and vascular data, respectively. To extract the vascular anatomy, light scattering in the tissue was modelled using a point spread function (PSF). The PSF was parametrized by optical tissue excitation and emission attenuation coefficients, which were estimated by fitting simulated images of microspheres convolved with the PSF model to the experimental microsphere images. These parameters were then applied within a new model-based method for vessel radius estimation. Current state-of-the-art radii estimation methods and the proposed model-based method were applied on vessel phantoms. In this validation study, the full-width half-maximum method of radii estimation, when performed on the raw data without correcting for the optical blurring, resulted in 42.9% error on average for the ${170}~mu{rm m}$ vessel. In comparison, the model-based method resulted in 0.6% error on average for the same phantom. Whole-organ porcine coronary vasculature was automatically reconstructed with the new model-based vascular extraction method.
机译:这项研究的目的是开发一种从冷冻切片机图像重建3-D冠状动脉血管的新方法,该方法包括两组不同的数据集:荧光微球珠和冠状动脉血管。荧光珠和注入血管的铸件分别用不同的滤光片设置成像,分别获得微球和血管数据。为了提取血管解剖结构,使用点扩散函数(PSF)对组织中的光散射进行建模。通过光学组织的激发和发射衰减系数对PSF进行参数化,通过将与PSF模型卷积的微球的模拟图像拟合到实验微球图像来估算PSF。然后将这些参数应用到基于模型的新方法中,以进行血管半径估计。当前最先进的半径估计方法和所提出的基于模型的方法已应用于血管模型。在此验证研究中,如果对原始数据执行半径估计的全宽半最大值方法而未校正光学模糊,则对于<公式>,平均平均误差为42.9% =“ TeX”> $ {170}〜mu {rm m} $ 容器。相比之下,基于模型的方法对同一模型的平均误差为0.6%。使用基于模型的新血管提取方法自动重建全器官猪冠状动脉血管。

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