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Articles

The influence of lung volume during imaging on CFD within realistic airway models

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Pages 214-223 | Received 24 Aug 2016, Accepted 14 Oct 2016, Published online: 18 Nov 2016

References

  • ANSYS, FLUENT. (2011). 14.0 Theory Guide. ANSYS Inc., Section 4.4.2., pp. 62–65.
  • Asgharian, B., Hofmann, W., and Bergmann, R. (2001). Particle Deposition in a Multiple-Path Model of the Human Lung. Aerosol Sci. Technol., 34(4):332–339. doi:10.1080/02786820119122
  • Bakker, M. E., Stolk, J., Reiber, J. H. C., and Stoel, B. C. (2012). Influence of Inspiration Level on Bronchial Lumen Measurements with Computed Tomography. Respir. Med., 106(5):677–686.
  • Balásházy, I., Farkas, Á., Szöke, I., and Hofmann, W. (2003). Simulation of Airflow, Aerosol Deposition and Clearance in Central Human Airways. In International Austrian-Israeli Technion Symposia, Particulate Matter and Health, Vienna, Austrian Academy of Sciences.
  • Baskin, M. I., Abd, A. G., and Ilowite, J. S. (1990). Regional Deposition of Aerosolized Pentamidine: Effects of Body Position and Breathing Pattern. Annal. Internal Med., 113(9):677–683.
  • Bateman, E. D. 1., Hurd, S. S., Barnes, P. J., Bousquet, J., Drazen, J. M., FitzGerald, M., Gibson, P., et al. (2008). Global Strategy for Asthma Management and Prevention: GINA Executive Summary. Eur. Respir. J., 31(1):143–178.
  • Brennan, D., Schubert, L., Diot, Q., Castillo, R., Castillo, E., Guerrero, T., Martel, M. K., et al. (2015). Clinical Validation of 4-Dimensional Computed Tomography Ventilation with Pulmonary Function Test Data. Int. J. Radiat. Oncol., Biol., Phys., 92(2):423–429. doi:10.1016/j.ijrobp.2015.01.019
  • Chae, E. J., Kim, T.-B., Cho, Y. S., Park, C.-S., Seo, J. B., Kim, N., and Moon, H.-B. (2011). Airway Measurement for Airway Remodeling Defined by Post-Bronchodilator FEV1/FVC in Asthma: Investigation Using Inspiration-Expiration Computed Tomography. Allergy, Asthma Immunol. Res., 3(2):111–117.
  • Chan, H.-F., Tawhai, M. H., Levin, D. L., Bartholmai, B. B., and Clark, A. R. (2014). Supine to Upright Lung Mechanics: Do Changes in Lung Shape Influence Lung Tissue Deformation? In Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE, 832–35. IEEE, New York. http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6943720
  • Colby, S. M., Einstein, D. R., Corley, R. A., Fessler, J. A., and Minard, K. R. (2014). Development and Testing of 4D MRI for Measuring Regional Lung Mechanics with High Spatiotemporal Resolution. Am. J. Respir. Crit. Care Med., 189:A4318.
  • Corley, R. A., Kabilan, S., Kuprat, A. P., Carson, J. P., Minard, K. R., Jacob, R. E., Timchalk, C., et al. (2012). Comparative Computational Modeling of Airflows and Vapor Dosimetry in the Respiratory Tracts of Rat, Monkey, and Human. Toxicol. Sci., 128 (2):500–516.
  • De Backer, J. W., Vos, W. G., Vinchurkar, S. C., Claes, R., Drollmann, A., Wulfrank, D., Parizel, P. M., Germonpré, P., and De Backer, W. (2010). Validation of Computational Fluid Dynamics in CT-Based Airway Models with SPECT/CT 1. Radiology, 257(3):854–862.
  • Delvadia, R. R., Longest, P. W., and Byron, P. R. (2012). In Vitro Tests for Aerosol Deposition. I: Scaling a Physical Model of the Upper Airways to Predict Drug Deposition Variation in Normal Humans. J. Aerosol Med. Pulmonary Drug Del., 25(1):32–40.
  • Diaz, A. A., Come, C. E., Ross, J. C., Estãšpar, R. S. J., Han, M. K., Loring, S. H., Silverman, E. K., and Washko, G. R. (2012). Association between Airway Caliber Changes with Lung Inflation and Emphysema Assessed by Volumetric CT Scan in Subjects with COPD. CHEST J., 141(3):736–744.
  • Friedman, K., Katz, I., Pichelin, M., Martin, A., Caillibotte, G., Conway, J., Fleming, J., Kroneberg, P., and Muellinger, B. (2011). Erect vs. Supine: A Physical Analysis of Aerosol Deposition in the Lungs Based on Results from Human Subject Experiments. In J. Aerosol Med. Pulmonary Drug Del., 24:162–65.
  • Gemci, T., Ponyavin, V., Chen, Y., Chen, H., and Collins, R. (2008). Computational Model of Airflow in Upper 17 Generations of Human Respiratory Tract. J. Biomech., 41(9):2047–2054.
  • Greenblatt, E. E., Winkler, T., Harris, R. S., Kelly, V. J., Kone, M., Katz, I., Martin, A., Caillibotte, G., Hess, D. R., and Venegas, J. G. (2016). Regional Ventilation and Aerosol Deposition with Helium-Oxygen in Bronchoconstricted Asthmatic Lungs. J. Aerosol Med. Pulmonary Drug Del., 29(3):260–272.
  • Greenblatt, E. E., Winkler, T., Harris, R. S., Kelly, V. J., Kone, M., Katz, I., Martin, A. R., Caillibotte, G., and Venegas, J. (2015a). What Causes Uneven Aerosol Deposition in the Bronchoconstricted Lung? A Quantitative Imaging Study. J. Aerosol Med. Pulmonary Drug Del., 29(3):260–272.
  • Greenblatt, E. E., Winkler, T., Harris, R. S., Kelly, V. J., Kone, M., and Venegas, J. (2015b). Analysis of Three-Dimensional Aerosol Deposition in Pharmacologically Relevant Terms: Beyond Black or White ROIs. J. Aerosol Med. Pulmonary Drug Del., 28(2): 116–129.
  • Grönkvist, M. J., Emery, M. J., and Gustafsson, P. M. (2002). Mechanisms of Ventilation Inhomogeneity during Vital Capacity Breaths Standing and Supine. Respir. Physiol., 129(3):345–355.
  • Gupta, S., Hartley, R., Khan, U. T., Singapuri, A., Hargadon, B., Monteiro, W., Pavord, I. D., et al. (2014). Quantitative Computed Tomography–derived Clusters: Redefining Airway Remodeling in Asthmatic Patients. J. Allergy Clin. Immunol., 133(3):729–738.
  • Ibanez, J., and Raurich, J. M. (1982). Normal Values of Functional Residual Capacity in the Sitting and Supine Positions. Intensive Care Med., 8(4):173–177.
  • Katz, I. M., Davis, B. M., and Martonen, T. B. (1999). A Numerical Study of Particle Motion within the Human Larynx and Trachea. J. Aerosol Sci., 30(2):173–183.
  • Lin, C.-L., Tawhai, M. H., and Hoffman, E. A. (2013). Multiscale Image-Based Modeling and Simulation of Gas Flow and Particle Transport in the Human Lungs. Wiley Interdiscip. Rev.: System. Biol. Med., 5(5):643–655.
  • Longest, P. W., and Hindle, M. (2009). Evaluation of the Respimat Soft Mist Inhaler Using a Concurrent CFD and in Vitro Approach. J. Aerosol Med. Pulmonary Drug Del., 22(2):99–112.
  • Longest, P. W., and Holbrook, L. T. (2012). In Silico Models of Aerosol Delivery to the Respiratory Tract—Development and Applications. Adv. Drug Del. Rev., 64(4):296–311.
  • Longest, P. W., and Vinchurkar, S. (2007). Validating CFD Predictions of Respiratory Aerosol Deposition: Effects of Upstream Transition and Turbulence. J. Biomech., 40(2):305–316.
  • Martonen, T. B., and Katz, I. (1993a). Deposition Patterns of Polydisperse Aerosols within Human Lungs. J. Aerosol Med., 6(4): 251–274.
  • Martonen, T. B., and Katz, I. M. (1993b). Deposition Patterns of Aerosolized Drugs within Human Lungs: Effects of Ventilatory Parameters. Pharmaceut. Res., 10(6):871–878.
  • Matida, E. A., Finlay, W. H., Lange, C. F., and Grgic, B. (2004). Improved Numerical Simulation of Aerosol Deposition in an Idealized Mouth–throat. J. Aerosol Sci., 35(1):1–19.
  • Menter, F. R., Langtry, R. B., Likki, S. R., Suzen, Y. B., Huang, P. G., and Völker, S. (2006). A Correlation-Based Transition Model Using Local Variables—Part I: Model Formulation. J. Turbomach., 128(3): 413–422.
  • Min, Y., Neylon, J., Shah, A., Meeks, S., Lee, P., Kupelian, P., and Santhanam, A. P. (2014). 4D-CT Lung Registration Using Anatomy-Based Multi-Level Multi-Resolution Optical Flow Analysis and Thin-Plate Splines. Int. J. Computer Assisted Radiol. Surg., 9(5):875–889. doi:10.1007/s11548-013-0975-7.
  • Miyawaki, S., Hoffman, E. A., and Lin, C.-L. (2016). Effect of Static vs. Dynamic Imaging on Particle Transport in CT-Based Numerical Models of Human Central Airways. J. Aerosol Sci., 100:129–39. doi:10.1016/j.jaerosci.2016.07.006.
  • Montesantos, S., Katz, I., Fleming, J., Majoral, C., Pichelin, M., Dubau, C., Piednoir, B., Conway, J., Texereau, J., and Caillibotte, G. (2013). Airway Morphology from High Resolution Computed Tomography in Healthy Subjects and Patients with Moderate Persistent Asthma. Anatom. Record, 296(6):852–866.
  • Petersson, J., Rohdin, M., Sánchez-Crespo, A., Nyrén, S., Jacobsson, H., Larsson, S. A., Lindahl, S. G. E., et al. (2007). Posture Primarily Affects Lung Tissue Distribution with Minor Effect on Blood Flow and Ventilation. Respir. Physiol. Neurobiol., 156(3):293–303.
  • Phuong, N. L., and Ito, K. (2015). Investigation of Flow Pattern in Upper Human Airway Including Oral and Nasal Inhalation by PIV and CFD. Build. Environ., 94:504–515.
  • de Rochefort, L., Vial, L., Fodil, R., Maître, X., Louis, B., Isabey, D., Caillibotte, G., et al. (2007). In Vitro Validation of Computational Fluid Dynamic Simulation in Human Proximal Airways with Hyperpolarized 3He Magnetic Resonance Phase-Contrast Velocimetry. J. Appl. Physiol., 102(5):2012–2023. doi:10.1152/japplphysiol.01610.2005
  • Sandeau, J., Katz, I., Fodil, R., Louis, B., Apiou-Sbirlea, G., Caillibotte, G., and Isabey, D. (2010). CFD Simulation of Particle Deposition in a Reconstructed Human Oral Extrathoracic Airway for Air and Helium–oxygen Mixtures. J. Aerosol Sci., 41(3):281–294.
  • Scheinherr, A., Bailly, L., Boiron, O., Lagier, A., Legou, T., Pichelin, M., Caillibotte, G., and Giovanni, A. (2015). Realistic Glottal Motion and Airflow Rate during Human Breathing. Med. Eng. Phys., 37(9):829–839.
  • Schroeter, J. D, Asgharian, B., Price, O. T., Kimbell, J. S., Kromidas, L., and Singal, M. (2016). Simulation of the Phase Change and Deposition of Inhaled Semi-Volatile Liquid Droplets in the Nasal Passages of Rats and Humans. J. Aerosol Sci., 95(May): 15–29.
  • Stapleton, K.-W., Guentsch, E., Hoskinson, M. K., and Finlay, W. H. (2000). On the Suitability of K–ε Turbulence Modeling for Aerosol Deposition in the Mouth and Throat: A Comparison with Experiment. J. Aerosol Sci., 31(6):739–749.
  • Van Ertbruggen, C., Hirsch, C., and Paiva, M. (2005). Anatomically Based Three-Dimensional Model of Airways to Simulate Flow and Particle Transport Using Computational Fluid Dynamics. J. Appl. Physiol., 98(3):970–980.
  • Weibel, E. R. (1963). Material and Methods of Preparation for Morphometric Studies of the Lung. In Morphometry of the Human Lung, 39–51. Springer, Berlin Heidelberg. http://link.springer.com/chapter/10.1007/978-3-642-87553-3_4
  • Zhang, Z., and Kleinstreuer, C. (2003). Low-Reynolds-Number Turbulent Flows in Locally Constricted Conduits: A Comparison Study. AIAA J., 41(5):831–840.
  • Zhang, Z., Kleinstreuer, C., and Kim, C. S. (2009). Comparison of Analytical and CFD Models with Regard to Micron Particle Deposition in a Human 16-Generation Tracheobronchial Airway Model. J. Aerosol Sci., 40(1):16–28.

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