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Predicting the Effectiveness of Population Replacement Strategy Using Mathematical Modeling
Published on: July 4, 2007
Controlling COVID-19 outbreaks in the correctional setting: A mathematical modelling study
Neil Arvin Bretaña1, Jisoo A Kwon2, Luke Grant3
1Allied Health and Human Performance, University of South Australia, Australia.
Insights
High COVID-19 vaccination coverage and prompt lockdowns are key to controlling outbreaks in prisons. Combining these with quarantine and isolation strategies significantly reduces disease spread in correctional settings.
Area of Science:
- Epidemiology
- Public Health
- Infectious Disease Modeling
Background:
- Correctional facilities are high-risk environments for COVID-19 outbreaks due to close proximity and co-morbidities.
- Effective public health strategies are crucial for managing respiratory pathogens in prisons.
Purpose of the Study:
- To model SARS-CoV-2 transmission in the New South Wales prison system.
- To assess the effectiveness of various COVID-19 mitigation strategies within correctional settings.
Main Methods:
- Developed an individual-based SARS-CoV-2 transmission model for 33 correctional centres in NSW, Australia.
- Simulated outbreaks under different scenarios: no controls, quarantine, isolation, testing, and immunisation.
Main Results:
- Without interventions, a peak of 472 daily infections was projected, with all inmates infected by day 120.
- High immunisation coverage and prompt lockdowns reduced outbreak size by 62-73%.
- Quarantine, isolation, and PPE use were effective when immunisation was not the sole strategy.
Conclusions:
- High immunisation coverage is vital but insufficient alone for controlling COVID-19 in prisons.
- Sustained quarantine, isolation, and high immunisation levels minimize outbreak risks in correctional systems.
- Findings inform public health policy for respiratory pathogens in Australian correctional settings.
Abstract:
Correctional centres (termed here 'prisons') are at high risk of COVID-19 and have featured major outbreaks worldwide. Inevitable close contacts, frequent inmate movements, and a disproportionate burden of co-morbidities mean these environments need to be prioritised in any public health response to respiratory pathogens such as COVID-19. We developed an individual-based SARS-CoV-2 transmission model for the prison system in New South Wales, Australia - incorporating all 33 correctional centres, 13,458 inmates, 578 healthcare and 6,909 custodial staff. Potential COVID-19 disease outbreaks were assessed under various mitigation strategies, including quarantine on entry, isolation of cases, rapid antigen testing of staff, as well as immunisation.Without control measures, the model projected a peak of 472 new infections daily by day 35 across the prison system, with all inmates infected by day 120. The most effective individual mitigation strategies were high immunisation coverage and prompt lockdown of centres with infected inmates which reduced outbreak size by 62-73%. Other than immunisation, the combination of quarantine of inmates at entry, isolation of proven or suspected cases, and widespread use of personal protective equipment by staff and inmates was the most effective strategy. High immunisation coverage mitigates the spread of COVID-19 within and between correctional settings but is insufficient alone. Maintaining quarantine and isolation, along with high immunisation levels, will allow correctional systems to function with a low risk of outbreaks. These results have informed public health policy for respiratory pathogens in Australian correctional systems.
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