Biomedical Engineering Reference
In-Depth Information
[14] Y.C. Fung, Biorheology in the analysis of the lung, Biorheology 19 (1982) 79.
[15] K.A. Gaar Jr., A.E. Taylor, A.C. Guyton, Effect of lung edema on pulmonary capillary pressure, Am. J.
Physiol. 216 (1969) 1370.
[16] A.C. Guyton, A.E. Taylor, R.E. Drake, J.C. Parker, Dynamics of subatmospheric pressure in the pulmonary
interstitial fluid, Ciba Found. Symp. (1976) 77.
[17] J. Hildebrandt, H. Bachofen, G. Brandt, Reduction of hysteresis in liquid-sealed bell-type spirometers, J.
Appl. Physiol. 28 (1970) 216.
[18] A.A. Merrikh, J.L. Lage, Effect of blood flow on gas transport in a pulmonary capillary, J. Biomech. Eng. 127
(2005) 432.
[19] D.S. Moffatt, A.C. Guyton, T.H. Adair, Functional diagrams of flow and volume for the dog's lung, J. Appl.
Physiol. 52 (1982) 1035.
[20] M. Ochs, J.R. Nyengaard, A. Jung, L. Knudsen, M. Voigt, T. Wahlers, et al., The number of alveoli in the
human lung, Am. J. Respir. Crit Care Med. 169 (1-1-2004) 120.
[21] A.B. Otis, W.O. Fenn, H. Rahn, Mechanics of breathing in man, J. Appl. Physiol. 2 (1950) 592.
[22] J.C. Parker, A.C. Guyton, A.E. Taylor, Pulmonary interstitial and capillary pressures estimated from intra-
alveolar fluid pressures, J. Appl. Physiol. 44 (1978) 267.
[23] S. Permutt, B. Bromberger-Barnea, H.N. Bane, Alveolar pressure, pulmonary venous pressure, and the vascu-
lar waterfall, Med. Thorac. 19 (1962) 239.
[24] H. Rahn, W.O. Fenn, A.B. Otis, Daily variations of vital capacity, residual air, and expiratory reserve includ-
ing a study of the residual air method, J. Appl. Physiol. 1 (1949) 725.
[25] H. Rahn, A.B. Otis, Continuous analysis of alveolar gas composition during work, hyperpnea, hypercapnia
and anoxia, J. Appl. Physiol. 1 (1949) 717.
[26] A. Roos, L.J. Thomas Jr., E.L. Nagel, D.C. Prommas, Pulmonary vascular resistance as determined by lung
inflation and vascular pressures, J. Appl. Physiol. 16 (1961) 77.
[27] A.E. Taylor, A.C. Guyton, V.S. Bishop, Permeability of the alveolar membrane to solutes, Circ. Res. 16 (1965)
353.
[28] E.R. Weibel, D.M. Gomez, Architecture of the human lung. Use of quantitative methods establishes funda-
mental relations between size and number of lung structures, Science 137 (8-24-1962) 577.
[29] E.R. Weibel, Morphological basis of alveolar-capillary gas exchange, Physiol. Rev. 53 (1973) 419.
[30] E.R. Weibel, P. Untersee, J. Gil, M. Zulauf, Morphometric estimation of pulmonary diffusion capacity. VI.
Effect of varying positive pressure inflation of air spaces, Respir. Physiol. 18 (1973) 285.
[31] B.M. Wiebe, H. Laursen, Human lung volume, alveolar surface area, and capillary length, Microsc. Res.
Tech. 32 (10-15-1995) 255.
Search WWH ::




Custom Search