Literature DB >> 21708492

Mechanical and optical dynamic model of lung.

Andrew Gouldstone1, Nazli Caner, Tristan B Swedish, Salmon M Kalkhoran, Charles A DiMarzio.   

Abstract

A multiscale, multiphysics model generates synthetic images of alveolar compression under spherical indentation at the visceral pleura of an inflated lung. A mechanical model connects the millimeter scale of an indenter tip to the behavior of alveoli, walls, and membrane at the micrometer scale. A finite-difference model of optical coherence tomography (OCT) generates the resulting images. Results show good agreement with the experiments performed using a unique indenter-OCT system. The images depict the physical result with the addition of refractive artifacts and speckle. Compression of the alveoli alters the refractive effects, which introduce systematic errors in the computation of alveolar volume. The complete computational model is useful to evaluate new proposed imaging instrumentation and to develop algorithms for obtaining quantitative data on deformation. Among the potential applications, a better understanding of recruitment of alveoli during inflation of a lung, obtained through a combination of models and imaging could lead to improvements in noninvasive treatment of atelectasis.

Mesh:

Year:  2011        PMID: 21708492     DOI: 10.1109/TBME.2011.2160346

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  3 in total

1.  Pre-clinical optical molecular imaging in the lung: technological challenges and future prospects.

Authors:  Charles A Dimarzio; Mark Niedre
Journal:  J Thorac Dis       Date:  2012-12       Impact factor: 2.895

2.  Refractive errors and corrections for OCT images in an inflated lung phantom.

Authors:  Ali Golabchi; J Faust; F N Golabchi; D H Brooks; A Gouldstone; C A Dimarzio
Journal:  Biomed Opt Express       Date:  2012-04-25       Impact factor: 3.732

3.  Flexible endoscopic micro-optical coherence tomography for three-dimensional imaging of the arterial microstructure.

Authors:  Junyoung Kim; Sunwon Kim; Joon Woo Song; Hyun Jung Kim; Min Woo Lee; Jeongmoo Han; Jin Won Kim; Hongki Yoo
Journal:  Sci Rep       Date:  2020-06-08       Impact factor: 4.379

  3 in total

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