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Balashazy, W. Hofmann, A. Farkas, B. Madas, Three-dimensional model for aerosol transport and deposition in expanding and contracting alveoli, Inhalation Toxicology 20 (2008) 611–621. A system of Eqs. (2)–(5) can be used to calculate particle deposition efficiency for a given region of the respiratory system. Theoretical analysis of the problem presented in [9–12] shows that inhaled particles with aerodynamic diameter d_a smaller than 0.1 micrometer are entirely deposited by diffusion in the alveolar region of the lungs.", "listPosition" : 1, "context" : "[12] I. Balashazy, W. Hofmann, A. Farkas, B. Madas, Three-dimensional model for aerosol transport and deposition in expanding and contracting alveoli, Inhalation Toxicology 20 (2008) 611–621. A system of Eqs. (2)–(5) can be used to calculate particle deposition efficiency for a given region of the respiratory system. Theoretical analysis of the problem presented in [9–12] shows that inhaled particles with aerodynamic diameter d_a smaller than 0.1 micrometer are entirely deposited by diffusion in the alveolar region of the lungs.", "published" : false, "snippet" : true } ], "mentionCount" : 1, "link" : "/api/citation/24265003", "label" : "Gradon L et al. Formation of particles for dry powder inhalers. (2014) ADVANCED POWDER TECHNOLOGY 0921-8831 1568-5527 25 1 43-55", "template" : "