Literature DB >> 23036641

The importance of the aggregation of ticks on small mammal hosts for the establishment and persistence of tick-borne pathogens: an investigation using the R(0) model.

Alan Harrison1, Nigel C Bennett.   

Abstract

Aggregation of parasites amongst hosts is important for the epidemiology of vector-borne diseases because hosts that support the majority of the vector population are responsible for the majority of pathogen transmission. Ixodes ricinus ticks transmit numerous pathogens of medical importance including Borrelia burgdorferi s.l. and tick-borne encephalitis virus. One transmission route involved is 'co-feeding transmission', where larvae become infected via feeding alongside infected nymphs. The aggregation of ticks on hosts leads to an increase in the number of larvae feeding alongside nymphs, increasing the transmission potential via this route. The basic reproduction number, R 0, can be used to identify whether a pathogen will become established if introduced. In the current study we use previously published tick, and pathogen, specific data to parameterize an R 0 model to investigate how the degree of aggregation of ticks on hosts affects pathogen persistence. The coincident aggregated distribution permitted the establishment of tick-borne encephalitis virus but did not influence whether B. burgdorferi s.l. became established. The relationship between the k-exponent of the negative binomial distribution and R 0 was also defined. Therefore, the degree of aggregation of ticks on small mammal hosts has important implications for the risk to human health in a given area.

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Year:  2012        PMID: 23036641     DOI: 10.1017/S0031182012000893

Source DB:  PubMed          Journal:  Parasitology        ISSN: 0031-1820            Impact factor:   3.234


  17 in total

1.  Comparative Efficacy of an Imidacloprid/Flumethrin Collar (Seresto®) and an Oral Fluralaner Chewable Tablet (Bravecto®) against Tick (Dermacentor variabilis and Amblyomma americanum) Infestations on Dogs: a Randomised Controlled Trial.

Authors:  Cameon M Ohmes; Joe Hostetler; Wendell L Davis; Terry Settje; Amy McMinn; William R Everett
Journal:  Parasitol Res       Date:  2015-08       Impact factor: 2.289

2.  Incorporating tick feeding behaviour into R0 for tick-borne pathogens.

Authors:  Simon P Johnstone-Robertson; Maria A Diuk-Wasser; Stephen A Davis
Journal:  Theor Popul Biol       Date:  2019-11-12       Impact factor: 1.570

Review 3.  Challenges posed by tick-borne rickettsiae: eco-epidemiology and public health implications.

Authors:  Marina E Eremeeva; Gregory A Dasch
Journal:  Front Public Health       Date:  2015-04-21

Review 4.  Co-feeding transmission in Lyme disease pathogens.

Authors:  Maarten J Voordouw
Journal:  Parasitology       Date:  2014-10-08       Impact factor: 3.234

5.  Pattern of tick aggregation on mice: larger than expected distribution tail enhances the spread of tick-borne pathogens.

Authors:  Luca Ferreri; Mario Giacobini; Paolo Bajardi; Luigi Bertolotti; Luca Bolzoni; Valentina Tagliapietra; Annapaola Rizzoli; Roberto Rosà
Journal:  PLoS Comput Biol       Date:  2014-11-13       Impact factor: 4.475

6.  Comparison of the lifetime host-to-tick transmission between two strains of the Lyme disease pathogen Borrelia afzelii.

Authors:  Maxime Jacquet; Gabriele Margos; Volker Fingerle; Maarten J Voordouw
Journal:  Parasit Vectors       Date:  2016-12-16       Impact factor: 3.876

7.  Goats as sentinel hosts for the detection of tick-borne encephalitis risk areas in the Canton of Valais, Switzerland.

Authors:  Nadia Rieille; Christine Klaus; Donata Hoffmann; Olivier Péter; Maarten J Voordouw
Journal:  BMC Vet Res       Date:  2017-07-11       Impact factor: 2.741

8.  Ticks infected via co-feeding transmission can transmit Lyme borreliosis to vertebrate hosts.

Authors:  Alessandro Belli; Anouk Sarr; Olivier Rais; Ryan O M Rego; Maarten J Voordouw
Journal:  Sci Rep       Date:  2017-07-10       Impact factor: 4.379

9.  Fitness estimates from experimental infections predict the long-term strain structure of a vector-borne pathogen in the field.

Authors:  Jonas Durand; Maxime Jacquet; Olivier Rais; Lise Gern; Maarten J Voordouw
Journal:  Sci Rep       Date:  2017-05-12       Impact factor: 4.379

10.  Abiotic predictors and annual seasonal dynamics of Ixodes ricinus, the major disease vector of Central Europe.

Authors:  Milan Daniel; Marek Malý; Vlasta Danielová; Bohumír Kříž; Patricia Nuttall
Journal:  Parasit Vectors       Date:  2015-09-18       Impact factor: 3.876

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