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Updated: May 11, 2026

Micro-Mechanical Characterization of Lung Tissue Using Atomic Force Microscopy
Published on: August 28, 2011
Heterogeneous distribution of mechanical stress in human lung: a mathematical approach to evaluate abnormal
A Carloni1, V Poletti, L Fermo
1Department Radiology Az., Ospedale Santa Maria, Via T.di Joannuccio 1, 05100 Terni, Italy. a.carloni@aospterni.it
Abstract:
Idiopathic pulmonary fibrosis (IPF) is the most common and severe form of idiopathic interstitial pneumonia. A recently proposed pathogenic model suggests that the concurrent action of cell senescence, exposure to cigarette smoke and mechanical stress due to respiratory lung movements lead to a localized exhaustion of tissue renewal capacity with eventual alveolar loss and abnormal lung remodeling. In this study we have compared the distribution of IPF lesions, as shown by TC radiological images, with the hypothetical distribution of maximal mechanical stress obtained by a simplified mathematical model. The geometry and distribution of stress as determined by our simulation are closely similar to those demonstrated in vivo in the lungs of patients with idiopathic pulmonary fibrosis using high resolution CT scan radiological imaging. These data argue in favor of the recently proposed contribution of mechanical stress to progressive damage and remodeling of lung parenchyma in IPF. The parameters of the model can be tuned on the age of the patients.
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