Computer simulation of inspiratory nasal airflow and inhaled gas uptake in a rhesus monkey

Kepler, GM; Richardson, RB; Morgan, KT; Kimbell, JS

HERO ID

15775

Reference Type

Journal Article

Year

1998

Language

English

PMID

9630447

HERO ID 15775
In Press No
Year 1998
Title Computer simulation of inspiratory nasal airflow and inhaled gas uptake in a rhesus monkey
Authors Kepler, GM; Richardson, RB; Morgan, KT; Kimbell, JS
Journal Toxicology and Applied Pharmacology
Volume 150
Issue 1
Page Numbers 1-11
Abstract There is increasing evidence that inspiratory airflow patterns play a major role in determining the location of nasal lesions induced in rats by reactive, water-soluble gases such as formaldehyde and chlorine. Characteristic lesion patterns have also been seen in inhalation toxicity studies conducted in rhesus monkeys, the nasal anatomy of which resembles that of humans. To examine the hypothesis that regions of high airflow-dependent uptake and lesions occur in similar nasal locations in the primate, airflow and gas uptake patterns were simulated in an anatomically accurate computer model of the right nasal airway of a rhesus monkey. The results of finite-element simulations of steady-state inspiratory nasal airflow for the full range of resting physiological flow rates are reported. Simulated airflow patterns agreed well with experimental observations, exhibiting secondary flows in the anterior nose and streamlined flow posteriorly. Simulated airflow results were used to predict gas transport to the nasal passage walls using formaldehyde as an example compound. Results from the uptake simulations were compared with published observations of formaldehyde-induced nasal lesions in rhesus monkeys and indicated a strong correspondence between airflow-dependent transport patterns and local lesion sites. This rhesus computer model will provide a means for confirming the extrapolation of toxicity data between species by extrapolating rat simulation results to monkeys and comparing these predictions with primate lesion data.
Doi 10.1006/taap.1997.8350
Pmid 9630447
Wosid WOS:000074073800001
Url <Go to ISI>://WOS:000074073800001
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English