Quantifying Viral Particle Aerosolization Risk During Tracheostomy Surgery and Tracheostomy Care.
Aerosols
Animals
COVID-19
/ prevention & control
Comparative Effectiveness Research
Electrocoagulation
/ adverse effects
Hot Temperature
Humans
Humidity
Infection Control
/ methods
Infectious Disease Transmission, Patient-to-Professional
/ prevention & control
Manikins
Masks
Medical Staff, Hospital
Risk Factors
SARS-CoV-2
Swine
Tracheostomy
/ adverse effects
Virion
Journal
JAMA otolaryngology-- head & neck surgery
ISSN: 2168-619X
Titre abrégé: JAMA Otolaryngol Head Neck Surg
Pays: United States
ID NLM: 101589542
Informations de publication
Date de publication:
01 09 2021
01 09 2021
Historique:
pubmed:
23
7
2021
medline:
30
9
2021
entrez:
22
7
2021
Statut:
ppublish
Résumé
During respiratory disease outbreaks such as the COVID-19 pandemic, aerosol-generating procedures, including tracheostomy, are associated with the risk of viral transmission to health care workers. To quantify particle aerosolization during tracheostomy surgery and tracheostomy care and to evaluate interventions that minimize the risk of viral particle exposure. This comparative effectiveness study was conducted from August 2020 to January 2021 at a tertiary care academic institution. Aerosol generation was measured in real time with an optical particle counter during simulated (manikin) tracheostomy surgical and clinical conditions, including cough, airway nebulization, open suctioning, and electrocautery. Aerosol sampling was also performed during in vivo swine tracheostomy procedures (n = 4), with or without electrocautery. Fluorescent dye was used to visualize cough spread onto the surgical field during swine tracheostomy. Finally, 6 tracheostomy coverings were compared with no tracheostomy covering to quantify reduction in particle aerosolization. Respirable aerosolized particle concentration. Cough, airway humidification, open suctioning, and electrocautery produced aerosol particles substantially above baseline. Compared with uncovered tracheostomy, decreased aerosolization was found with the use of tracheostomy coverings, including a cotton mask (73.8% [(95% CI, 63.0%-84.5%]; d = 3.8), polyester gaiter 79.5% [95% CI, 68.7%-90.3%]; d = 7.2), humidification mask (82.8% [95% CI, 72.0%-93.7%]; d = 8.6), heat moisture exchanger (HME) (91.0% [95% CI, 80.2%-101.7%]; d = 19.0), and surgical mask (89.9% [95% CI, 79.3%-100.6%]; d = 12.8). Simultaneous use of a surgical mask and HME decreased the particle concentration compared with either the HME (95% CI, 1.6%-12.3%; Cohen d = 1.2) or surgical mask (95% CI, 2.7%-13.2%; d = 1.9) used independently. Procedures performed with electrocautery increased total aerosolized particles by 1500 particles/m3 per 5-second interval (95% CI, 1380-1610 particles/m3 per 5-second interval; d = 1.8). The findings of this laboratory and animal comparative effectiveness study indicate that tracheostomy surgery and tracheostomy care are associated with significant aerosol generation, putting health care workers at risk for viral transmission of airborne diseases. Combined HME and surgical mask coverage of the tracheostomy was associated with decreased aerosolization, thereby reducing the risk of viral transmission to health care workers.
Identifiants
pubmed: 34292321
pii: 2782370
doi: 10.1001/jamaoto.2021.1383
pmc: PMC8299368
doi:
Substances chimiques
Aerosols
0
Types de publication
Journal Article
Research Support, N.I.H., Extramural
Langues
eng
Sous-ensembles de citation
IM
Pagination
797-803Subventions
Organisme : NIDCD NIH HHS
ID : R01 DC018567
Pays : United States
Organisme : NIDCD NIH HHS
ID : R21 DC017225
Pays : United States
Commentaires et corrections
Type : CommentIn