Abstract Background: Rats are frequently used to study the pharmacological and toxicological effects of inhaled aerosol particles. The deposition behavior of aerosol particles in airways is affected by their hygroscopic properties, which accordingly influence the results of such studies. Method: A recently published nonhygroscopic aerosol particle deposition model for rat airways was extended with equations for hygroscopic particle growth in humid air and with a model to mimic the temperature and relative humidity conditions in the rat airways transformed from the upper human airways. As there are no experimental data available for hygroscopic deposition in rat lungs, several model assumptions were made for the humidity distribution in the ...
Rats have been widely used as surrogates for evaluating the health effects of inhaled airborne parti...
Animal models are essential for understanding the fates and effects of inhaled materials, because in...
The growth of single dry salt aerosol particles during respiration in human airways is calculated wi...
Rats are used to test the toxicological and pharmacological effects of aerosol particles on the orga...
Deposition of particles in rat airways was measured using two methods. In method 1, a controlled flo...
Rats have been widely used as surrogates for evaluating the adverse health effects of inhaled airbor...
Summarization: The objective of the current study was to determine the growth and deposition of hygr...
Context: Inhaled hygroscopic aerosols will absorb water vapor from the warm and humid air of the hum...
Understanding the fate of inhaled aerosol particles in healthy and diseased lungs may help in assess...
Experimental data on fine and coarse aerosol deposition in the nasal airways of animals are essentia...
A number of deposition models for humans, as well as experimental animals, have been described. Howe...
Particulate matter is a collective term for very small-suspended particulates in ambient air that ca...
Hygroscopic aerosol particles will grow during respiration depending on their own properties and the...
International audienceIn silico models of airflow and particle deposition in the lungs are increasin...
Aerosols of five different sizes varying from about 0.05 micron to 3 micron in aerodynamic equivalen...
Rats have been widely used as surrogates for evaluating the health effects of inhaled airborne parti...
Animal models are essential for understanding the fates and effects of inhaled materials, because in...
The growth of single dry salt aerosol particles during respiration in human airways is calculated wi...
Rats are used to test the toxicological and pharmacological effects of aerosol particles on the orga...
Deposition of particles in rat airways was measured using two methods. In method 1, a controlled flo...
Rats have been widely used as surrogates for evaluating the adverse health effects of inhaled airbor...
Summarization: The objective of the current study was to determine the growth and deposition of hygr...
Context: Inhaled hygroscopic aerosols will absorb water vapor from the warm and humid air of the hum...
Understanding the fate of inhaled aerosol particles in healthy and diseased lungs may help in assess...
Experimental data on fine and coarse aerosol deposition in the nasal airways of animals are essentia...
A number of deposition models for humans, as well as experimental animals, have been described. Howe...
Particulate matter is a collective term for very small-suspended particulates in ambient air that ca...
Hygroscopic aerosol particles will grow during respiration depending on their own properties and the...
International audienceIn silico models of airflow and particle deposition in the lungs are increasin...
Aerosols of five different sizes varying from about 0.05 micron to 3 micron in aerodynamic equivalen...
Rats have been widely used as surrogates for evaluating the health effects of inhaled airborne parti...
Animal models are essential for understanding the fates and effects of inhaled materials, because in...
The growth of single dry salt aerosol particles during respiration in human airways is calculated wi...