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一种从在恒定压力下采集的计算机断层扫描图像计算啮齿动物肺顺应性图像的新方法。

Novel method to calculate pulmonary compliance images in rodents from computed tomography acquired at constant pressures.

作者信息

Guerrero Thomas, Castillo Richard, Sanders Kevin, Price Roger, Komaki Ritsuko, Cody Dianna

机构信息

Division of Radiation Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

出版信息

Phys Med Biol. 2006 Mar 7;51(5):1101-12. doi: 10.1088/0031-9155/51/5/003. Epub 2006 Feb 8.

Abstract

Our goal was to develop a method for generating high-resolution three-dimensional pulmonary compliance images in rodents from computed tomography (CT) images acquired at a series of constant pressures in ventilated animals. One rat and one mouse were used to demonstrate this technique. A pre-clinical GE flat panel CT scanner (maximum 31 line-pairs cm(-1) resolution) was utilized for image acquisition. The thorax of each animal was imaged with breath-holds at 2, 6, 10, 14 and 18 cm H2O pressure in triplicate. A deformable image registration algorithm was applied to each pair of CT images to map corresponding tissue elements. Pulmonary compliance was calculated on a voxel by voxel basis using adjacent pairs of CT images. Triplicate imaging was used to estimate the measurement error of this technique. The 3D pulmonary compliance images revealed regional heterogeneity of compliance. The maximum total lung compliance measured 0.080 (+/-0.007) ml air per cm H2O per ml of lung and 0.039 (+/-0.004) ml air per cm H2O per ml of lung for the rat and mouse, respectively. In this study, we have demonstrated a unique method of quantifying regional lung compliance from 4 to 16 cm H2O pressure with sub-millimetre spatial resolution in rodents.

摘要

我们的目标是开发一种方法,用于从在通气动物的一系列恒定压力下采集的计算机断层扫描(CT)图像中生成啮齿动物的高分辨率三维肺顺应性图像。使用一只大鼠和一只小鼠来演示该技术。使用一台临床前通用平板CT扫描仪(最大分辨率为31线对/cm)进行图像采集。对每只动物的胸部在2、6、10、14和18 cm H2O压力下屏气成像,共进行三次。对每对CT图像应用可变形图像配准算法来映射相应的组织元素。使用相邻的CT图像对逐体素计算肺顺应性。进行三次成像以估计该技术的测量误差。三维肺顺应性图像显示了顺应性的区域异质性。大鼠和小鼠的最大总肺顺应性分别为每厘米H2O每毫升肺0.080(±0.007)毫升空气和每厘米H2O每毫升肺0.039(±0.004)毫升空气。在本研究中,我们展示了一种独特的方法,可在啮齿动物中以亚毫米空间分辨率量化4至16 cm H2O压力下的区域肺顺应性。

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