Airspace Diameter Map—A Quantitative Measurement of All Pulmonary Airspaces to Characterize Structural Lung Diseases

Author:

Blaskovic Sanja1,Anagnostopoulou Pinelopi2,Borisova Elena1ORCID,Schittny Dominik1,Donati Yves34,Haberthür David1ORCID,Zhou-Suckow Zhe5,Mall Marcus A.678ORCID,Schlepütz Christian M.9ORCID,Stampanoni Marco910,Barazzone-Argiroffo Constance34,Schittny Johannes C.1ORCID

Affiliation:

1. Institute of Anatomy, University of Bern, 3012 Bern, Switzerland

2. Medical School, University of Cyprus, Nicosia 2029, Cyprus

3. Department of Pediatrics, Gynecology and Obstetrics, Faculty of Medicine, University of Geneva, 4 rue Gabrielle-Perret-Gentil, 1211 Genève, Switzerland

4. Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland

5. Department of Translational Pulmonology, University Hospital Heidelberg, Translational Lung Research Center (TLRC), A Member of German Center for Lung Research (DZL), 69120 Heidelberg, Germany

6. Department of Pediatric Respiratory Medicine, Immunology and Critical Care Medicine, Charité-Universitätsmedizin Berlin, 10115 Berlin, Germany

7. Berlin Institute of Health (BIH), Charité-Universitätsmedizin Berlin, 10115 Berlin, Germany

8. German Center for Lung Research (DZL), Associated Partner Site, 10115 Berlin, Germany

9. Swiss Light Source, Paul Scherrer Institute, 5232 Villigen, Switzerland

10. Institute for Biomedical Engineering, University and ETH Zürich, 8093 Zurich, Switzerland

Abstract

(1) Background: Stereological estimations significantly contributed to our understanding of lung anatomy and physiology. Taking stereology fully 3-dimensional facilitates the estimation of novel parameters. (2) Methods: We developed a protocol for the analysis of all airspaces of an entire lung. It includes (i) high-resolution synchrotron radiation-based X-ray tomographic microscopy, (ii) image segmentation using the free machine-learning tool Ilastik and ImageJ, and (iii) calculation of the airspace diameter distribution using a diameter map function. To evaluate the new pipeline, lungs from adult mice with cystic fibrosis (CF)-like lung disease (βENaC-transgenic mice) or mice with elastase-induced emphysema were compared to healthy controls. (3) Results: We were able to show the distribution of airspace diameters throughout the entire lung, as well as separately for the conducting airways and the gas exchange area. In the pathobiological context, we observed an irregular widening of parenchymal airspaces in mice with CF-like lung disease and elastase-induced emphysema. Comparable results were obtained when analyzing lungs imaged with μCT, sugges-ting that our pipeline is applicable to different kinds of imaging modalities. (4) Conclusions: We conclude that the airspace diameter map is well suited for a detailed analysis of unevenly distri-buted structural alterations in chronic muco-obstructive lung diseases such as cystic fibrosis and COPD.

Funder

Swiss National Science Foundation

Schweizerische Gesellschaft für Cystische Fibrose

OPO Fundation

SWISS LUNG LIGA

German Federal Ministry of Education and Research

Publisher

MDPI AG

Subject

General Medicine

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