Related Experiment Video
Updated: Jun 13, 2026

Absorption of Nasal and Bronchial Fluids: Precision Sampling of the Human Respiratory Mucosa and Laboratory Processing of Samples
Published on: January 21, 2018
Susceptibility of an Airborne Common Cold Virus to Relative Humidity
Sadegh Niazi1, Robert Groth1, Luke Cravigan1
1Queensland University of Technology (QUT), Science and Engineering Faculty, School of Earth and Atmospheric Sciences, Brisbane 4001, Australia.
Abstract:
The viability of airborne respiratory viruses varies with ambient relative humidity (RH). Numerous contrasting reports spanning several viruses have failed to identify the mechanism underlying this dependence. We hypothesized that an "efflorescence/deliquescence divergent infectivity" (EDDI) model accurately predicts the RH-dependent survival of airborne human rhinovirus-16 (HRV-16). We measured the efflorescence and deliquescence RH (RHE and RHD, respectively) of aerosols nebulized from a protein-enriched saline carrier fluid simulating the human respiratory fluid and found the RH range of the aerosols' hygroscopic hysteresis zone (RHE-D) to be 38-68%, which encompasses the preferred RH for indoor air (40-60%). The carrier fluid containing HRV-16 was nebulized into the sub-hysteresis zone (RH
More Related Videos
Related Concept Videos
Upper Respiratory Drugs: Decongestants
Most decongestants are readily available over-the-counter in various...
Microbiota of the Respiratory Tract
Influenza
Respiratory Syncytial Virus Disease
Inhibitors Of Virion Release

