Quantifying the impact of community quarantine on SARS transmission in Ontario: estimation of secondary case count difference and number needed to quarantine
Open Access
- 24 December 2009
- journal article
- research article
- Published by Springer Nature in BMC Public Health
- Vol. 9 (1) , 488
- https://doi.org/10.1186/1471-2458-9-488
Abstract
Background: Community quarantine is controversial, and the decision to use and prepare for it should be informed by specific quantitative evidence of benefit. Case-study reports on 2002-2004 SARS outbreaks have discussed the role of quarantine in the community in transmission. However, this literature has not yielded quantitative estimates of the reduction in secondary cases attributable to quarantine as would be seen in other areas of health policy and cost-effectiveness analysis.Methods: Using data from the 2003 Ontario, Canada, SARS outbreak, two novel expressions for the impact of quarantine are presented. Secondary Case Count Difference (SCCD) reflects reduction in the average number of transmissions arising from a SARS case in quarantine, relative to not in quarantine, at onset of symptoms. SCCD was estimated using Poisson and negative binomial regression models (with identity link function) comparing the number of secondary cases to each index case for quarantine relative to non-quarantined index cases. The inverse of this statistic is proposed as the number needed to quarantine (NNQ) to prevent one additional secondary transmission.Results: Our estimated SCCD was 0.133 fewer secondary cases per quarantined versus non-quarantined index case; and a NNQ of 7.5 exposed individuals to be placed in community quarantine to prevent one additional case of transmission in the community. This analysis suggests quarantine can be an effective preventive measure, although these estimates lack statistical precision.Conclusions: Relative to other health policy areas, literature on quarantine tends to lack in quantitative expressions of effectiveness, or agreement on how best to report differences in outcomes attributable to control measure. We hope to further this discussion through presentation of means to calculate and express the impact of population control measures. The study of quarantine effectiveness presents several methodological and statistical challenges. Further research and discussion are needed to understand the costs and benefits of enacting quarantine, and this includes a discussion of how quantitative benefit should be communicated to decision-makers and the public, and evaluated.This publication has 49 references indexed in Scilit:
- The "number needed to treat" turns 20 -- and continues to be used and misusedCMAJ : Canadian Medical Association Journal, 2008
- Effectiveness of single dose rifampicin in preventing leprosy in close contacts of patients with newly diagnosed leprosy: cluster randomised controlled trialBMJ, 2008
- Optimizing Severe Acute Respiratory Syndrome Response Strategies: Lessons Learned From QuarantineAmerican Journal of Public Health, 2007
- Evidence and Effectiveness in Decisionmaking for QuarantineAmerican Journal of Public Health, 2007
- Impact of quarantine on the 2003 SARS outbreak: A retrospective modeling studyJournal of Theoretical Biology, 2007
- Duration and distance of exposure are important predictors of transmission among community contacts of Ontario SARS casesEpidemiology and Infection, 2007
- SARS transmission in Vietnam outside of the health-care settingEpidemiology and Infection, 2006
- Strategies for mitigating an influenza pandemicNature, 2006
- Nonpharmaceutical Interventions for Pandemic Influenza, International MeasuresEmerging Infectious Diseases, 2006
- Quarantine for SARS, TaiwanEmerging Infectious Diseases, 2005