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A multiscale analytical model of bronchial airway acoustics.
- Source :
-
The Journal of the Acoustical Society of America [J Acoust Soc Am] 2017 Oct; Vol. 142 (4), pp. 1774. - Publication Year :
- 2017
-
Abstract
- Sound transmission and resulting airway wall vibration in a complex multiscale viscoelastic model of the subglottal bronchial tree was calculated using a modified one-dimensional (1D) branching acoustic waveguide approach. This is an extension of previous work to enable use of complex airway trees that are partially derived from subject-specific medical images, without the need for self-similarity in the geometric structure. The approach was validated numerically for simplified airway geometries, as well as experimentally by comparison to previous studies. A comprehensive conducting airway tree with about 60 000 branches was then modified to create fibrotic, bronchoconstrictive, and pulmonary infiltrate conditions. The fibrotic case-systemic increase in soft tissue stiffness-increased the Helmholtz resonance frequency due to the increased acoustic impedance. Bronchoconstriction, with geometric changes in small conducting airways, decreased acoustic energy transmission to the peripheral airways due in part to the increased impedance mismatch between airway orders. Pulmonary infiltrate significantly altered the local acoustic field in the affected lobe. Calculation of acoustic differences between healthy versus pathologic cases can be used to enhance the understanding of vibro-acoustic changes correlated to pathology, and potentially provide improved tools for the diagnosis of pulmonary diseases that uniquely alter the acoustics of the airways.
- Subjects :
- Acute Chest Syndrome diagnostic imaging
Acute Chest Syndrome pathology
Bronchi diagnostic imaging
Bronchi pathology
Case-Control Studies
Computer Simulation
Elasticity
Humans
Lung Diseases, Obstructive diagnostic imaging
Lung Diseases, Obstructive pathology
Motion
Numerical Analysis, Computer-Assisted
Pulmonary Fibrosis diagnostic imaging
Pulmonary Fibrosis pathology
Reproducibility of Results
Time Factors
Vibration
Viscosity
Acoustics
Acute Chest Syndrome physiopathology
Bronchi physiopathology
Bronchoconstriction
Lung Diseases, Obstructive physiopathology
Models, Anatomic
Models, Theoretical
Pulmonary Fibrosis physiopathology
Sound
Subjects
Details
- Language :
- English
- ISSN :
- 1520-8524
- Volume :
- 142
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- The Journal of the Acoustical Society of America
- Publication Type :
- Academic Journal
- Accession number :
- 29092575
- Full Text :
- https://doi.org/10.1121/1.5005497