Journal article
Contact mechanics model of lung lobar sliding
Applications in Engineering Science, Vol.10, p.100098
06/2022
DOI: 10.1016/j.apples.2022.100098
Abstract
Lobar sliding is an often-overlooked aspect of lung mechanics that presents a potential source of variance in the lung mechanics and physiology of different subjects. The goal of this study was to develop a finite element model suitable for studying lobar sliding in the lungs to gain insights about the extent to which too little or too much lobar sliding impacts breathing. We focused on the left lung as it has a single lobar fissure. The model geometry was derived from whole lung and lobar segmentations of a CT image at end inhalation and was divided into three components: a thoracic cavity outer shell, a volumetric upper lobe, and a volumetric lower lobe. Deformation of the lung tissue was driven by non-zero displacement boundary conditions applied to the thoracic cavity shell to simulate exhalation and contact constraints between each of the three geometric components. To verify the numerical methods used in this contact mechanics model, we replicated a contact mechanics benchmark problem from the literature. Further, numerical simulations were performed to determine the optimal contact mechanics parameters for the lung model. The resulting model displacement field exhibited discontinuities at the lobar fissure indicative of lobar sliding and had an average error of 2.3 mm when compared to displacements between anatomical landmarks on the CT images, which is consistent with lung simulation models in literature. The developed finite element contact mechanics model of the lung is novel in the lung mechanics field and may be interrogated to gain insights about the role of lobar sliding in breathing mechanics.
Details
- Title: Subtitle
- Contact mechanics model of lung lobar sliding
- Creators
- Adam E Galloy - Roy J. Carver Department of Biomedical Engineering, University of Iowa, 5601 Seamans Center for the Engineering Arts and Sciences, Iowa City, Iowa, 52242Ryan E Amelon - Roy J. Carver Department of Biomedical Engineering, University of Iowa, 5601 Seamans Center for the Engineering Arts and Sciences, Iowa City, Iowa, 52242Joseph M Reinhardt - University of IowaM.L Raghavan - Roy J. Carver Department of Biomedical Engineering, University of Iowa, 5601 Seamans Center for the Engineering Arts and Sciences, Iowa City, Iowa, 52242
- Resource Type
- Journal article
- Publication Details
- Applications in Engineering Science, Vol.10, p.100098
- DOI
- 10.1016/j.apples.2022.100098
- ISSN
- 2666-4968
- Publisher
- Elsevier Ltd
- Grant note
- DOI: 10.13039/100000002, name: National Institutes of Health
- Language
- English
- Date published
- 06/2022
- Academic Unit
- Roy J. Carver Department of Biomedical Engineering; Radiology
- Record Identifier
- 9984256877402771
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