A Morphometric Model of Lung Mechanics for Time-Domain Analysis of Alveolar Pressures during Mechanical Ventilation
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[1] P S Crooke,et al. A general mathematical model for respiratory dynamics relevant to the clinical setting. , 1993, The American review of respiratory disease.
[2] Z Hantos,et al. Volume dependence of respiratory impedance in infants. , 1997, American journal of respiratory and critical care medicine.
[3] David W. Kaczka,et al. Low-frequency respiratory mechanics using ventilator-driven forced oscillations. , 1993, Journal of applied physiology.
[4] K. Lutchen,et al. Relationship between heterogeneous changes in airway morphometry and lung resistance and elastance. , 1997, Journal of applied physiology.
[5] K. Horsfield,et al. An asymmetrical model of the airways of the dog lung. , 1982, Journal of applied physiology: respiratory, environmental and exercise physiology.
[6] David W. Kaczka,et al. Optimal ventilation waveforms for estimating low-frequency respiratory impedance. , 1993, Journal of applied physiology.
[7] M. Tavola,et al. Pulmonary and chest wall mechanics in anesthetized paralyzed humans. , 1991, Journal of applied physiology.
[8] K. Lutchen,et al. Physiological interpretations based on lumped element models fit to respiratory impedance data: use of forward-inverse modeling , 1990, IEEE Transactions on Biomedical Engineering.
[9] Kenneth R. Lutchen,et al. How Heterogeneous Bronchoconstriction Affects Ventilation Distribution in Human Lungs: A Morphometric Model , 2004, Annals of Biomedical Engineering.
[10] J. Bates,et al. A model of the spontaneously breathing patient: applications to intrinsic PEEP and work of breathing. , 1997, Journal of applied physiology.
[11] Arthur H. Benade,et al. On the Propagation of Sound Waves in a Cylindrical Conduit , 1968 .
[12] P Baconnier,et al. A theoretical analysis of interrupter technique for measuring respiratory mechanics. , 1988, Journal of applied physiology.
[13] Osman K. Mawardi,et al. On Acoustic Boundary Layer Heating , 1954 .
[14] J. Fredberg,et al. Input impedance and peripheral inhomogeneity of dog lungs. , 1992, Journal of applied physiology.
[15] J. J. Fredberg,et al. Mechanical Response of the Lungs at High Frequencies , 1978 .
[16] J. Bates,et al. Effect of stochastic heterogeneity on lung impedance during acute bronchoconstriction: a model analysis. , 1997, Journal of applied physiology.
[17] B. Suki,et al. Airway geometry and wall mechanical properties estimated from subglottal input impedance in humans. , 1994, Journal of applied physiology.
[18] M. Khoo,et al. Optimal application of high-frequency ventilation in infants: a theoretical study , 1993, IEEE Transactions on Biomedical Engineering.
[19] Andre Vladimirescu,et al. The Spice Book , 1994 .
[20] D. Navajas,et al. Dynamic viscoelastic nonlinearity of lung parenchymal tissue. , 1995, Journal of applied physiology.
[21] J. Bates,et al. Computer analysis of physical factors affecting the use of the interrupter technique in infants , 1988, Pediatric pulmonology.
[22] B Suki,et al. Wave propagation, input impedance, and wall mechanics of the calf trachea from 16 to 1,600 Hz. , 1993, Journal of applied physiology.
[23] B Suki. Nonlinear phenomena in respiratory mechanical measurements. , 1993, Journal of applied physiology.
[24] K. Hickling,et al. The pressure-volume curve is greatly modified by recruitment. A mathematical model of ARDS lungs. , 1998, American journal of respiratory and critical care medicine.
[25] D E Olson,et al. Models of the human bronchial tree. , 1971, Journal of applied physiology.
[26] B Suki,et al. How inhomogeneities and airway walls affect frequency dependence and separation of airway and tissue properties. , 1996, Journal of applied physiology.
[27] K. Lutchen,et al. Airway remodeling in asthma amplifies heterogeneities in smooth muscle shortening causing hyperresponsiveness. , 1999, Journal of applied physiology.