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1 studying virus-host interactions in natural airborne infections.
2 sal or intramuscular vaccine immunization on airborne infection and transmission of SARS-CoV-2 in Syr
4 h poor TB treatment success rates, a lack of airborne infection control, limited drug-resistance test
8 cupational risk, with implications for other airborne infections including coronavirus disease 2019.
9 umptive pulmonary tuberculosis are placed in airborne infection isolation (AII) and assessed by smear
10 rd of care in the United States to determine airborne infection isolation (AII) of inpatients with pr
11 t germicidal irradiation, specialized rooms (airborne infection isolation and protective environments
12 2020 in 2 similar hospitals with high vs low airborne infection isolation room utilization rates but
13 Environmental sampling is conducted in three airborne infection isolation rooms (AIIRs) in the ICU an
20 s (Mtb) pathogen, the causative agent of the airborne infection tuberculosis (TB), harbors a number o
21 thereby underlying pulmonary proteinosis and airborne infections, type I interferon viral diseases, t
23 r either enzyme (NOS2/Phox(-/-)), to control airborne infection with the avirulent R1Rv and H37Ra str
24 o more resistant than wild-type (WT) mice to airborne infection with virulent Mycobacterium tuberculo