Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The effects of naris occlusion on mouse nasal turbinate development

View through CrossRef
Summary Unilateral naris occlusion, a standard method for causing odor deprivation, also alters airflow on both sides of the nasal cavity. We reasoned that manipulating airflow by occlusion could affect nasal turbinate development given the ubiquitous role of environmental stimuli in ontogenesis. To test this hypothesis, newborn mice received unilateral occlusion or sham surgery and were allowed to reach adulthood. Morphological measurements were then made of paraffin sections sampled throughout the nasal cavity. Occlusion significant affected the size, shape, and position of turbinates. In particular, the nasoturbinate, the focus of our quantitative analysis, had a more delicate appearance on the occluded side relative to the open side. Occlusion also caused an increase in the width of the dorsal meatus within the non-occluded and occluded nasal fossae, compared to controls, and the position of most turbinates was altered. These results suggest that a mechanical stimulus from respiratory airflow is necessary for the normal morphological development of turbinates. To explore this idea, we estimated the mechanical forces on turbinates due to airflow during normal respiration that would be abrogated by occlusion. MRI scans were used to construct a 3D model of the mouse nasal cavity that provided the input for a computational fluid dynamics simulation of nasal airflow. The simulation revealed maximum shear stress values for the walls of turbinates in the 1 Pa range, a magnitude that causes remodeling in other biological tissues. These observations raise the intriguing possibility that nasal turbinates develop partly under the control of respiratory mechanical forces.
Title: The effects of naris occlusion on mouse nasal turbinate development
Description:
Summary Unilateral naris occlusion, a standard method for causing odor deprivation, also alters airflow on both sides of the nasal cavity.
We reasoned that manipulating airflow by occlusion could affect nasal turbinate development given the ubiquitous role of environmental stimuli in ontogenesis.
To test this hypothesis, newborn mice received unilateral occlusion or sham surgery and were allowed to reach adulthood.
Morphological measurements were then made of paraffin sections sampled throughout the nasal cavity.
Occlusion significant affected the size, shape, and position of turbinates.
In particular, the nasoturbinate, the focus of our quantitative analysis, had a more delicate appearance on the occluded side relative to the open side.
Occlusion also caused an increase in the width of the dorsal meatus within the non-occluded and occluded nasal fossae, compared to controls, and the position of most turbinates was altered.
These results suggest that a mechanical stimulus from respiratory airflow is necessary for the normal morphological development of turbinates.
To explore this idea, we estimated the mechanical forces on turbinates due to airflow during normal respiration that would be abrogated by occlusion.
MRI scans were used to construct a 3D model of the mouse nasal cavity that provided the input for a computational fluid dynamics simulation of nasal airflow.
The simulation revealed maximum shear stress values for the walls of turbinates in the 1 Pa range, a magnitude that causes remodeling in other biological tissues.
These observations raise the intriguing possibility that nasal turbinates develop partly under the control of respiratory mechanical forces.

Related Results

Clinical Outcomes of Inferior Turbinate Reduction Surgery in Patients with Allergic Rhinitis: A Prospective Observational Study
Clinical Outcomes of Inferior Turbinate Reduction Surgery in Patients with Allergic Rhinitis: A Prospective Observational Study
Background: Allergic rhinitis is a chronic inflammatory disorder of the nasal mucosa characterized by nasal obstruction, rhinorrhoea, sneezing, and itching, significantly affecting...
PLEANG : WINDOW DESIGN METHODOLOGY FOR PRINCE NARIS LEARNING CENTER
PLEANG : WINDOW DESIGN METHODOLOGY FOR PRINCE NARIS LEARNING CENTER
H.R.H. Prince Narisaranuvativongse (1863-1947) worked in various art fields, including architecture during the reign of King Chulalongkorn (King Rama V, r. 1868- 1910) until the re...
MUCORMYCOSIS EFFECTS ON TURBINO SEPTAL COMPONENTS-OUR EXPERIENCE.
MUCORMYCOSIS EFFECTS ON TURBINO SEPTAL COMPONENTS-OUR EXPERIENCE.
Introduction: Mucormycosis is a aggressive and most dangerous type of oppurtunistic Fungal infection. This disease starts commonly from Nose and Para nasal Sinuses. Many a times Mi...
New anatomical profile of the nasal musculature: Dilator naris vestibularis, dilator naris anterior, and alar part of the nasalis
New anatomical profile of the nasal musculature: Dilator naris vestibularis, dilator naris anterior, and alar part of the nasalis
AbstractThe aim of this study was to clarify the morphology and topography of the dilator naris vestibularis, dilator naris anterior, and alar part of the nasalis. Anatomical varia...
Association of breathing patterns and quality of life in patients with nasal obstruction
Association of breathing patterns and quality of life in patients with nasal obstruction
Introduction: In the general population, nasal obstruction is a common complaint. However, an objective evaluation of nasal obstruction is difficult. Nose examination, computed tom...
Analysis of nasal parameters and nasal index of dry crania in Southern Nigeria
Analysis of nasal parameters and nasal index of dry crania in Southern Nigeria
Background: Nasal index shows the ratio of the width to the height of the nasal skeleton. It is useful in forensic science, anthropology and clinical medicine. The aim of this stud...

Back to Top