Nasal Aerosol Simulation

Nasal aerosol simulation is the experimental or computational modeling of how airborne particles and droplets move through and deposit within the nasal passages, supporting the design and evaluation of respiratory therapies. It represents nasal anatomy, airflow conditions, aerosol properties, and delivery-device operation to predict transport and deposition through mechanisms such as inertial impaction, sedimentation, and diffusion. In medicine, these simulations help assess intranasal drug delivery, compare spray devices, optimize formulation and administration parameters, and investigate how particle size or breathing patterns influence regional deposition. By linking device performance with nasal physiology, the approach can improve treatment targeting and guide safer, more efficient aerosol-based interventions.

Nasal Aerosol Simulation - Related Videos

Research

JoVE Journal - Medicine

Modeling and Simulations of Olfactory Drug Delivery with Passive and Active Controls of Nasally Inhaled Pharmaceutical Aerosols

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Cited by 18 •

2016

This manuscript reviews the modeling and simulations of different protocols to deliver medications to the olfactory region in image-based nasal airway models. Multiple software modules are used to develop the anatomically accurate nose model, generate computational mesh, simulate nasal airflows, and predict particle deposition at the olfactory region.

Intranasal Delivery of mRNA Polyplexes via Rayleigh Breakup Aerosols: An In Vitro Method for Nasal Deposition and Functional Testing

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2026

This protocol presents Rayleigh breakup as a mild process for aerosolizing non-viral mRNA vectors. Regional deposition for aerosolized mRNA vectors is evaluated by the Alberta Idealized Nasal Inlet (AINI) model. Green fluorescence protein (GFP) expression in human lung cells represents maintenance of physicochemical and biological functions of post-aerosolized mRNA vectors.

Whole-Body Nanoparticle Aerosol Inhalation Exposures

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Cited by 51 •

2013

A whole-body nanoparticle aerosol inhalation exposure facility was constructed for nano-sized titanium dioxide (TiO2) inhalation toxicology studies. This system provides nano-TiO2 aerosol test atmospheres that have: 1) a steady mass concentration; 2) a homogenous composition free of contaminants; and 3) a stable particle size distribution during aerosol generation.

A Technique to Generate and Deliver Drug Aerosols Directly to Mouse Lungs

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2025

This video demonstrates the generation of drug aerosols and the targeted nose-only delivery of these aerosols to mice using an inhalation unit equipped with an aerosol generator. The mouse is restrained in a nose-only restrainer and connected to the inhalation unit, which delivers the drug directly into the mouse's nasal cavity. Subsequently, the drug passes through the trachea and enters the lungs.

Research

JoVE Journal - Engineering
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A System to Create Stable Nanoparticle Aerosols from Nanopowders

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Cited by 4 •

2016

We designed and developed an effective nanopowder aerosolization setup and operating protocol. The system generated nanoparticle aerosols with stable number concentrations and size distributions for long durations, requiring only small quantities of test material (min. 200 mg).

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