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An Automated Self-similarity Analysis of the Pulmonary Tree of the Sprague-Dawley Rat

机译:Sprague-Dawley大鼠肺树的自动自相似性分析

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摘要

We present the results of an automated analysis of the morphometry of the pulmonary airway trees of the Sprague Dawley rat. Our work is motivated by a need to inform lower-dimensional mathematical models in order to prescribe realistic boundary conditions for multiscale hybrid models of rat lung mechanics. Silicone casts were made from three age-matched, male Sprague Dawley rats, immersed in a gel containing a contrast agent and subsequently imaged with magnetic resonance (MR). From a segmentation of this data, we extracted a connected graph, representing the airway centerline. Segment statistics (lengths and diameters) were derived from this graph. To validate this MR imaging/digital analysis method, airway segment measurements were compared to nearly one thousand measurements collected by hand using an optical microscope from one of the rat lung casts. To evaluate the reproducibility of the MR imaging/digital analysis method, two lung casts were each imaged three times with randomized orientations in the MR bore. Diameters and lengths of randomly selected airways were compared among each of the repeated imaging datasets to estimate the variability. Finally, we analyzed the morphometry of the airway tree by assembling individual airway segments into structures that span multiple generations, which we call branches. We show that branches not segments are the fundamental repeating unit in the rat lung and develop simple mathematical relationships describing these structures for the entire lung. Our analysis shows that airway diameters and lengths have both a deterministic and stochastic character.
机译:我们提出了对Sprague Dawley大鼠的肺气道树形态自动分析的结果。我们的工作是出于对低维数学模型的了解,以便为大鼠肺力学的多尺度混合模型规定现实的边界条件。由三只年龄相匹配的雄性Sprague Dawley大鼠制成硅树脂铸模,将其浸入含有造影剂的凝胶中,然后通过磁共振(MR)进行成像。从这些数据的分割中,我们提取了一个连接图,代表了气道中心线。从该图得出分段统计信息(长度和直径)。为了验证这种MR成像/数字分析方法,将气道段测量结果与使用光学显微镜从一只大鼠肺模型中手工收集的近一千次测量结果进行了比较。为了评估MR成像/数字分析方法的可重复性,在MR孔中以随机方向对两个肺铸型成像了3次。在每个重复成像数据集中比较随机选择的气道的直径和长度,以估计变异性。最后,我们通过将单个气道段组装成跨多个世代的结构(称为分支)来分析气道树的形态。我们表明分支而不是段是大鼠肺中的基本重复单元,并发展了描述整个肺部这些结构的简单数学关系。我们的分析表明,气道直径和长度既具有确定性又具有随机性。

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