Forced expiration simulation for functional diagnostics of disturbance of the human respiratory system
Sibirskij žurnal industrialʹnoj matematiki, Tome 5 (2002) no. 1, pp. 157-165.

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N. V. Ul'yanychev; V. A. Kochegurov; V. F. Ul'yanycheva. Forced expiration simulation for functional diagnostics of disturbance of the human respiratory system. Sibirskij žurnal industrialʹnoj matematiki, Tome 5 (2002) no. 1, pp. 157-165. http://geodesic.mathdoc.fr/item/SJIM_2002_5_1_a15/

[1] Hyatt P. E., “Expiratory flow limitation”, J. Appl. Physiol.: Respirat. Environ. Exercise Physiol., 55 (1983), 1–8

[2] Dawson S. V., Elliot E. A., “Wave-speed limitation on expiratory flow. A unifying concept”, J. Appl. Physiol.: Respirat. Environ. Exercise Phisiol., 43 (1977), 498–515

[3] Fry D. L., “A preliminary lung model for simulating the aerodynamics of the bronchial tree”, Comput. Biomed. Physiol., 1968, no. 2, 111–134

[4] Macklem P. T., Wilson N. J., “Measurement of intrabronchial pressure in man”, J. Appl. Physiol., 20 (1965), 653–663

[5] Stanescu D. C. et al., “Glottis opening and airway resistanse”, J. Appl. Physiol., 32 (1972), 460–466

[6] Baier H. et al., “Relationship among glottis opening, respiratory flow and upper airway resistance in humans”, J. Appl. Physiol.: Respirat. Environ. Exercise Physiol., 43 (1977), 603–611

[7] Drazen J. M., “Physiological basis and interpretation of indices of pulmonary mechanics”, Environ. Health Persp., 56 (1984), 3–9 | DOI

[8] Strakhovich K. I., Gidro- i gazodinamika, Nauka, M., 1980

[9] Veibel E. R., Morfometriya legkikh cheloveka, Meditsina, M., 1970

[10] Loitsyanskii L. G., Mekhanika zhidkosti i gaza, Nauka, M., 1973 | MR

[11] Kuznetsova V. K., Lyubimov G. A., “Otsenka fizicheskikh svoistv legkikh cheloveka na osnove issledovaniya soprotivleniya dykhatelnykh putei”, Fiziologiya cheloveka, 11 (1985), 55–78