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Published on: May 31, 2020
Transmission parameters of vector-borne infections
1Institut de veille Sanitaire, 12, rue du Val-d'Osne, 94415 Saint-Maurice, France. Jc.desenclos@invs.sante.fr
Abstract:
Vector-borne infections are those for which the agent (virus, bacteria, or parasite) is transmitted from an infected host (animal or human) to another by a hematophagous arthropod (mosquito, tick, lice, and flea). Two parameters quantify the dynamics of a vector-borne infection: (1) the basic reproductive number (R(0)) that is the mean number of secondary infections transmitted from an infectious host by the bite of the vector and (2) the generation interval that explores the speed of occurrence of secondary cases transmitted by the vector from an infectious case. In a population in which some individuals are immune, the parameter of interest is the net reproduction number (R) function of R(0) and the proportion of those immune. For vector-borne infectious agents, R(0) is determined by the number of vectors in contact with a given individual (m), the number of a given vector bites/day on individuals (a), the daily survival rate of the vector (p), the duration of the pathogenic agent's development cycle in the vector (n), the proportion of infected vectors that are really infectious (vector competence) (b), the probability of agent transmission from a viremic individual to the vector for one bite (c) and the host's infectiousness clearance rate (r) with R(0)=(m. a(2). p(n)/-lnp). b. c/r. These parameters are related to geographic and climatic conditions and cannot, therefore, be extrapolated from one situation to another.
Insights
Vector-borne infections spread via arthropods like mosquitoes and ticks. Key dynamics include the basic reproductive number (R(0)) and generation interval, influenced by environmental factors.
Area of Science:
- Epidemiology
- Infectious Diseases
- Vector-Borne Diseases
Background:
- Vector-borne infections involve agents transmitted by arthropods (e.g., mosquitoes, ticks).
- Understanding disease dynamics requires quantifying transmission parameters.
- Immunity levels in a population affect overall infection spread.
Purpose of the Study:
- To define and explain key parameters for quantifying vector-borne infection dynamics.
- To present the formula for the basic reproductive number (R(0)) in vector-borne diseases.
- To highlight the influence of environmental factors on transmission.
Main Methods:
- Defined the basic reproductive number (R(0)) and generation interval.
- Presented the formula for R(0) incorporating vector and host parameters.
- Emphasized the role of geographic and climatic conditions.
Main Results:
- R(0) is determined by vector density, biting rate, survival, pathogen development, vector competence, transmission probability, and host clearance rate.
- The formula for R(0) was presented as (m.a(2).p(n)/-lnp).b.c/r.
- Identified that transmission parameters are geographically and climatically dependent.
Conclusions:
- Vector-borne infection dynamics are quantifiable using specific epidemiological parameters.
- The basic reproductive number (R(0)) is a complex metric influenced by multiple biological and environmental factors.
- Parameters governing vector-borne diseases are not universally applicable and vary by location and climate.
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