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Comprehensive assessment and characterization of pulmonary acinar morphometry using multi-resolution micro x-ray computed tomography.

机译:使用多分辨率显微X射线计算机断层扫描技术全面评估和表征肺泡腺形态。

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摘要

The characterization of the normal pulmonary acinus is a necessary first step in understanding the nature of respiratory physiology and in assessing the etiology of pulmonary pathology. Murine models play a vital role in the advancement of current understanding of the dynamics of gas exchange, particle deposition and the manifestations of diseases such as COPD, Cystic Fibrosis and Asthma. With the advent of interior tomography techniques, high-resolution micro computed tomography (?CT) systems provide the ability to nondestructively assess the pulmonary acinus at micron and sub-micron resolutions. With the application of Systematic Uniform Random Sampling (SURS) principles applied to in-situ fixed, intact, ex-vivo lungs, we seek to characterize the structure of pulmonary acini in mice and study the variations across dimensions of age, location within the lung and strain phenotypes.;Lungs from mice of three common research strains were perfusion fixed in-situ, and imaged using a multi-resolution muCT system (Micro XCT 400, Zeiss Inc.). Using lower resolution whole lung images, SURS methods were used for identification of region-specific acini for high-resolution imaging. Acinar morphometric metrics included diameters, lengths and branching angles for each alveolar duct and total path lengths from entrance of the acinus to the terminal alveolar sacs. In addition, other metrics such as acinar volume, alveolar surface area and surface area/volume ratios were assessed.;A generation-based analysis demonstrated significant differences in acinar morphometry across young and old age groups and across the three strains. The method was successfully adapted to large animals and the data from one porcine specimen has been presented. The registration framework provides a direct technique to assess acinar deformations and provides critical physiological information about the state of alveolar ducts and individual alveoli at different phases of respiration.;The techniques presented here allow us to perform direct assessment of the three-dimensional structure of the pulmonary acinus in previously unavailable detail and present a unique technique for comprehensive quantitative analysis. The acinar morphometric parameters will help develop improved mathematical and near-anatomical models that can accurately represent the geometric structure of acini, leading to improved assessment of flow dynamics in the normal lung.
机译:正常肺腺泡的表征是了解呼吸生理的本质和评估肺病理学病因的必要的第一步。鼠模型在当前对气体交换动力学,颗粒沉积以及COPD,囊性纤维化和哮喘等疾病表现的认识上起着至关重要的作用。随着内部层析成像技术的出现,高分辨率的微型计算机层析成像(?CT)系统提供了以微米和亚微米分辨率无损评估肺腺泡的能力。通过将系统均匀随机采样(SURS)原理应用于原位固定,完整,离体肺,我们寻求表征小鼠肺腺泡的结构,并研究年龄,肺内位置的跨度变化将来自三个常见研究菌株的小鼠的肺原位灌注固定,并使用多分辨率muCT系统(Micro XCT 400,Zeiss Inc.)成像。使用较低分辨率的全肺图像,使用SURS方法识别高分辨率的区域特异性腺泡。腺泡形态测量指标包括每个肺泡管的直径,长度和分支角度,以及从腺泡入口到末端肺泡囊的总路径长度。此外,还评估了其他指标,例如腺泡体积,肺泡表面积和表面积/体积比。;基于世代的分析表明,在年轻人和老年人群以及这三个菌株之间,腺泡形态的显着差异。该方法已成功地适用于大型动物,并且已展示了来自一只猪标本的数据。该注册框架提供了一种直接的技术来评估腺泡变形,并提供有关呼吸不同阶段的肺泡管和单个肺泡状态的重要生理信息。这里介绍的技术使我们能够直接评估肺泡的三维结构。肺腺泡以前无法获得的细节,并提出了用于全面定量分析的独特技术。腺泡形态计量学参数将有助于开发改进的数学模型和近解剖模型,从而可以准确表示腺泡的几何结构,从而改善对正常肺中血流动力学的评估。

著录项

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Biomedical engineering.;Medical imaging.;Physiology.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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