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基于影像的肺功能测试对肺部疾病异质性的定量评估。

Quantification of heterogeneity in lung disease with image-based pulmonary function testing.

机构信息

Department of Mechanical &Aerospace Engineering, Monash University, Melbourne, VIC, Australia.

4Dx Limited, Melbourne, VIC, Australia.

出版信息

Sci Rep. 2016 Jul 27;6:29438. doi: 10.1038/srep29438.

Abstract

Computed tomography (CT) and spirometry are the mainstays of clinical pulmonary assessment. Spirometry is effort dependent and only provides a single global measure that is insensitive for regional disease, and as such, poor for capturing the early onset of lung disease, especially patchy disease such as cystic fibrosis lung disease. CT sensitively measures change in structure associated with advanced lung disease. However, obstructions in the peripheral airways and early onset of lung stiffening are often difficult to detect. Furthermore, CT imaging poses a radiation risk, particularly for young children, and dose reduction tends to result in reduced resolution. Here, we apply a series of lung tissue motion analyses, to achieve regional pulmonary function assessment in β-ENaC-overexpressing mice, a well-established model of lung disease. The expiratory time constants of regional airflows in the segmented airway tree were quantified as a measure of regional lung function. Our results showed marked heterogeneous lung function in β-ENaC-Tg mice compared to wild-type littermate controls; identified locations of airway obstruction, and quantified regions of bimodal airway resistance demonstrating lung compensation. These results demonstrate the applicability of regional lung function derived from lung motion as an effective alternative respiratory diagnostic tool.

摘要

计算机断层扫描(CT)和肺量测定法是临床肺部评估的主要方法。肺量测定法依赖于努力程度,只能提供单一的全局测量值,对区域性疾病不敏感,因此,对于捕捉肺部疾病的早期发作,尤其是囊性纤维化肺部疾病等斑片状疾病,效果不佳。CT 敏感地测量与晚期肺部疾病相关的结构变化。然而,外周气道阻塞和早期肺僵硬的发生往往难以检测。此外,CT 成像会带来辐射风险,尤其是对于幼儿而言,而降低剂量往往会导致分辨率降低。在这里,我们应用了一系列肺组织运动分析,以实现β-ENaC 过表达小鼠的区域性肺功能评估,这是一种成熟的肺部疾病模型。通过对分段气道树中的区域气流的呼气时间常数进行量化,作为区域性肺功能的衡量标准。我们的结果表明,与野生型同窝对照相比,β-ENaC-Tg 小鼠的区域性肺功能存在明显的异质性;确定了气道阻塞的位置,并量化了具有双模态气道阻力的区域,表明肺部代偿。这些结果表明,源自肺运动的区域性肺功能可以作为一种有效的替代呼吸诊断工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e7b/4962033/704e164f152f/srep29438-f1.jpg

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