Viral respiratory tract infections are a leading cause of morbidity and mortality worldwide. Unfortunately, the transmission routes and shedding kinetics of respiratory viruses remain poorly understood. Air sampling techniques to quantify infectious viruses in the air are indispensable to improve intervention strategies to control and prevent spreading of respiratory viruses. Here, the collection of infectious virus with the six-stage Andersen cascade impactor was optimized with semi-solid gelatin as collection surface. Subsequently, the collection efficiency of the cascade impactor, the SKC BioSampler, and an in-house developed electrostatic preci
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Measurements of airborne viruses via sampling have been critical issues. Most electrostatic samplers...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Viral respiratory tract infections are a leading cause of morbidity and mortality worldwide. Unfortu...
Collection efficiencies of four bioaerosol samplers ( Andersen impactor, AGI-30 impinger, gelatin fi...
Researchers must be able to measure concentrations, sizes, and infectivity of virus-containing parti...
ABSTRACT The dynamics and significance of aerosol transmission of respiratory viruses are still cont...
While various sampling methods exist for collecting and enumerating airborne bacteria and fungi, no ...
While various sampling methods exist for collecting and enumerating airborne bacteria and fungi, no ...
While various sampling methods exist for collecting and enumerating airborne bacteria and fungi, no ...
[[abstract]]Viral aerosol infection through cough generates large amounts of viral aerosol and can r...
[[abstract]]Viral aerosol infection through cough generates large amounts of viral aerosol and can r...
[[abstract]]Viral aerosol infection through cough generates large amounts of viral aerosol and can r...
Airborne transmission of the influenza virus contributes significantly to the spread of this infecti...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Measurements of airborne viruses via sampling have been critical issues. Most electrostatic samplers...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Viral respiratory tract infections are a leading cause of morbidity and mortality worldwide. Unfortu...
Collection efficiencies of four bioaerosol samplers ( Andersen impactor, AGI-30 impinger, gelatin fi...
Researchers must be able to measure concentrations, sizes, and infectivity of virus-containing parti...
ABSTRACT The dynamics and significance of aerosol transmission of respiratory viruses are still cont...
While various sampling methods exist for collecting and enumerating airborne bacteria and fungi, no ...
While various sampling methods exist for collecting and enumerating airborne bacteria and fungi, no ...
While various sampling methods exist for collecting and enumerating airborne bacteria and fungi, no ...
[[abstract]]Viral aerosol infection through cough generates large amounts of viral aerosol and can r...
[[abstract]]Viral aerosol infection through cough generates large amounts of viral aerosol and can r...
[[abstract]]Viral aerosol infection through cough generates large amounts of viral aerosol and can r...
Airborne transmission of the influenza virus contributes significantly to the spread of this infecti...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...
Measurements of airborne viruses via sampling have been critical issues. Most electrostatic samplers...
Airborne biological particles are made by bacteria, viruses, fungi, pollen, dust mites and other liv...