• FluTrackers.com Inc. does not provide medical advice. Information on this web site is collected from various internet resources, and the FluTrackers board of directors makes no warranty to the safety, efficacy, correctness or completeness of the information posted on this site by any author or poster. The information collated here is for instructional and/or discussion purposes only and is NOT intended to diagnose or treat any disease, illness, or other medical condition. Every individual reader or poster should seek advice from their personal physician/healthcare practitioner before considering or using any interventions that are discussed on this website. By continuing to access this website you agree to consult your personal physican before using any interventions posted on this website, and you agree to hold harmless FluTrackers.com Inc., the board of directors, the members, and all authors and posters for any effects from use of any medication, supplement, vitamin or other substance, device, intervention, etc. mentioned in posts on this website, or other internet venues referenced in posts on this website.
  • We are not asking for any donations. Do not donate to any entity who says they are raising funds for us.

Indian J Med Res. Prudent public health intervention strategies to control the coronavirus disease 2019 transmission in India: A mathematical model-ba

tetano

Editor, Senior Moderator
Indian J Med Res. 2020 Mar 23. doi: 10.4103/ijmr.IJMR_504_20. [Epub ahead of print]
Prudent public health intervention strategies to control the coronavirus disease 2019 transmission in India: A mathematical model-based approach.


Mandal S[SUP]1[/SUP], Bhatnagar T[SUP]2[/SUP], Arinaminpathy N[SUP]3[/SUP], Agarwal A[SUP]1[/SUP], Chowdhury A[SUP]1[/SUP], Murhekar M[SUP]4[/SUP], Gangakhedkar RR[SUP]5[/SUP], Sarkar S[SUP]1[/SUP].

Author information




Abstract

Background & objectives:

:Coronavirus disease 2019 (COVID-19) has raised urgent questions about containment and mitigation, particularly in countries where the virus has not yet established human-to-human transmission. The objectives of this study were to find out if it was possible to prevent, or delay, the local outbreaks of COVID-19 through restrictions on travel from abroad and if the virus has already established in-country transmission, to what extent would its impact be mitigated through quarantine of symptomatic patients?"
Methods:

:These questions were addressed in the context of India, using simple mathematical models of infectious disease transmission. While there remained important uncertainties in the natural history of COVID-19, using hypothetical epidemic curves, some key findings were illustrated that appeared insensitive to model assumptions, as well as highlighting critical data gaps.
Results:

:It was assumed that symptomatic quarantine would identify and quarantine 50 per cent of symptomatic individuals within three days of developing symptoms. In an optimistic scenario of the basic reproduction number (R00) being 1.5, and asymptomatic infections lacking any infectiousness, such measures would reduce the cumulative incidence by 62 per cent. In the pessimistic scenario of R0=4, and asymptomatic infections being half as infectious as symptomatic, this projected impact falls to two per cent.
Interpretation & conclusions:

:Port-of-entry-based entry screening of travellers with suggestive clinical features and from COVID-19-affected countries, would achieve modest delays in the introduction of the virus into the community. Acting alone, however, such measures would be insufficient to delay the outbreak by weeks or longer. Once the virus establishes transmission within the community, quarantine of symptomatics may have a meaningful impact on disease burden. Model projections are subject to substantial uncertainty and can be further refined as more is understood about the natural history of infection of this novel virus. As a public health measure, health system and community preparedness would be critical to control any impending spread of COVID-19 in the country.



KEYWORDS:

Airport screening; COVID-19; deterministic model; mathematical model; mitigation; quarantine; transmission


PMID:32202261DOI:10.4103/ijmr.IJMR_504_20
 
Back
Top