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Background: SARS-CoV-2 can be effectively transmitted between individuals located in close proximity to each other for extended durations. Aircraft provide such conditions. Although high attack rates during flights were reported, little was known about the risk levels of aerosol transmission of SARS-CoV-2 in aircraft cabins.
Objectives: The major objective was to estimate the risk of contracting COVID-19 from transmission of aerosol particles in aircraft cabins.
Methods: In two single-aisle and one twin-aisle aircraft, dispersion of generated aerosol particles over a seven-row economy class cabin section was measured under cruise and taxi conditions and simulated with a computational fluid dynamic model under cruise conditions. Using the aerosol particle dispersion data, a quantitative microbial risk assessment was conducted for scenarios with an asymptomatic infectious person expelling aerosol particles by breathing and speaking. Effects of flight conditions were evaluated using generalized additive mixed models.
Results: Aerosol particle concentration decreased with increasing distance from the infectious person, and this decrease varied with direction. On a typical flight with an average shedder, estimated mean risk of contracting COVID-19 ranged from to . Risk increased to with a super shedder ( of cases) on a long flight. Risks increased with increasing flight duration: 2-23 cruise flights of typical duration and 2-10 flights of longer duration resulted in at least 1 case of COVID-19 due to onboard aerosol transmission by one average shedder, and in the case of one super shedder, at least 1 case in 1-3 flights of typical duration cruise and 1 flight of longer duration.
Discussion: Our findings indicate that the risk of contracting COVID-19 by aerosol transmission in an aircraft cabin is low, but it will not be zero. Testing before boarding may help reduce the chance of a (super)shedder boarding an aircraft and mask use further reduces aerosol transmission in the aircraft cabin. https://doi.org/10.1289/EHP11495.
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http://dx.doi.org/10.1289/EHP11495 | DOI Listing |
Virology
September 2025
Infection Biology Unit, German Primate Center, 37077 Göttingen, Germany.
New SARS-CoV-2 variants continue to emerge and may cause new waves of COVID-19. Antibody evasion is a major driver of variant emergence but variants can also exhibit altered capacity to enter lung cells and to use ACE2 species orthologues for cell entry. Here, we assessed cell line tropism, usage of ACE2 orthologues and antibody evasion of variant MC.
View Article and Find Full Text PDFMinerva Dent Oral Sci
September 2025
Department of Dental Research Cell, Dr. D.Y. Patil Dental College and Hospital, Dr. D.Y. Patil Vidyapeeth, Pune, India.
The COVID-19 pandemic, particularly in India, continues to pose a major threat to public health owing to the large number of patients that remain affected. The second wave of COVID-19 has brought with it several opportunistic diseases caused by bacteria and fungi, including mucormycosis, which is a well-known fungal infection primarily encountered in immunocompromised individuals through inhalation. In recent times, mucormycosis has become increasingly common in COVID-19 patients, particularly those with comorbidities such as diabetes, and has been observed to induce secondary infections as it spreads with COVID-19 treatment.
View Article and Find Full Text PDFJ Infect Dev Ctries
August 2025
ICMR-Vector Control Research Centre, Puducherry, India.
Introduction: This study analyzed the age and sex distribution of COVID-19 patients during the initial three COVID-19 waves in Puducherry, India, from August 2020 to March 2022, to understand the distribution of infection across different demographic groups.
Methods: The disease surveillance program conducted at ICMR-Vector Control Research Centre processed 79,705 Throat Swab/Nasal Swab (TSNS) samples received from various institutions in Puducherry through the Integrated Disease Surveillance Program (IDSP). Real-time reverse-transcriptase-polymerase chain reaction (rRT-PCR) was performed following approved protocols.
J Educ Health Promot
July 2025
Department of Nursing, Faculty of Health Sciences, Alanya Alaaddin Keykubat University, Antalya, Turkey.
Background: Given the paucity of studies in the existing literature that have evaluated the relationship between women's fear of the pandemic and their health beliefs about breast cancer, it was deemed necessary to conduct a study on this subject. The study was designed to ascertain the breast cancer risk status of women aged 40-69 years and to examine the relationship between pandemic fear and health beliefs about breast cancer.
Materials And Methods: The descriptive and correlational study was conducted online data collection form from July to December 2021.
Virus Res
September 2025
Pennsylvania Department of Agriculture, Pennsylvania Veterinary Laboratory, Harrisburg, PA 17110, USA. Electronic address:
The severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) is capable of infecting multiple species through human-to-animal spillover. Human to animal spillovers have been documented both in domestic and wild animal species. Due to close contact in shared households, pet dogs may be at increased risk for contracting the SARS-CoV-2 virus from infected individuals in the same household.
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