Literature DB >> 31705595

Seasonality and anatomical location of human tick bites in the United Kingdom.

Benjamin Cull1, Maaike E Pietzsch1, Emma L Gillingham1,2, Liz McGinley1, Jolyon M Medlock1,2,3, Kayleigh M Hansford1,2.   

Abstract

Tick bites on humans can occur in a variety of habitats and may result in the transmission of tick-borne pathogens, such as the causative agent of Lyme borreliosis (LB), Borrelia burgdorferi sensu lato. As the risk of transmission of this pathogen to the host increases with the duration of tick feeding, the recognition and removal of ticks as soon as possible following attachment is important for reducing the risk of infection. Performing a thorough body examination for ticks following potential exposure is recommended by tick awareness campaigns. Knowledge of where on the body feeding ticks are frequently found, and at which times of year peak tick exposure occurs, provides important information for public health messaging and may aid those bitten by ticks to engage more effectively with tick-checking behaviour. This paper summarizes human tick bites in the United Kingdom (UK) during 2013-2018 reported to Public Health England's passive Tick Surveillance Scheme and further examines the anatomical location and seasonality of bites from the most commonly encountered tick and LB vector Ixodes ricinus. A total of 1,328 tick records from humans were received of which 93% were I. ricinus. Humans were most commonly bitten by I. ricinus nymphs (70% bites). Tick bites were recorded on all parts of the body, but there were significant differences in their anatomical location on adults and children. Most tick bites on adults occurred on the legs (50%), whereas on children tick bites were mostly on the head and neck (43%). Bites from I. ricinus were recorded throughout the year but were most numerous during May to August. This study adds to the body of research on the seasonality and anatomical location of human tick bites in temperate Europe and highlights the importance of data collected through passive surveillance in addition to research and epidemiological studies.
© 2019 Crown copyright. Zoonoses Public Health © 2019 Blackwell Verlag GmbH.

Entities:  

Keywords:  zzm321990Ixodes ricinuszzm321990; public health; tick awareness

Mesh:

Year:  2019        PMID: 31705595     DOI: 10.1111/zph.12659

Source DB:  PubMed          Journal:  Zoonoses Public Health        ISSN: 1863-1959            Impact factor:   2.702


  9 in total

1.  Identification and Distribution of Human-Biting Ticks in Northwestern Spain.

Authors:  María Carmen Vieira Lista; Moncef Belhassen-García; María Belén Vicente Santiago; Javier Sánchez-Montejo; Carlos Pedroza Pérez; Lía Carolina Monsalve Arteaga; Zaida Herrador; Rufino Del Álamo-Sanz; Agustin Benito; Julio David Soto López; Antonio Muro
Journal:  Insects       Date:  2022-05-18       Impact factor: 3.139

Review 2.  One Health Approach to Tick and Tick-Borne Disease Surveillance in the United Kingdom.

Authors:  Nicholas Johnson; Lawrence Paul Phipps; Kayleigh M Hansford; Arran J Folly; Anthony R Fooks; Jolyon M Medlock; Karen L Mansfield
Journal:  Int J Environ Res Public Health       Date:  2022-05-11       Impact factor: 4.614

3.  Ixodes ricinus and Borrelia burgdorferi sensu lato in the Royal Parks of London, UK.

Authors:  Kayleigh M Hansford; Liz McGinley; Samantha Wilkinson; Emma L Gillingham; Ben Cull; Sara Gandy; Daniel P Carter; Alexander G C Vaux; Simon Richards; Alister Hayes; Jolyon M Medlock
Journal:  Exp Appl Acarol       Date:  2021-06-14       Impact factor: 2.132

Review 4.  Benefits and Drawbacks of Citizen Science to Complement Traditional Data Gathering Approaches for Medically Important Hard Ticks (Acari: Ixodidae) in the United States.

Authors:  Lars Eisen; Rebecca J Eisen
Journal:  J Med Entomol       Date:  2021-01-12       Impact factor: 2.278

5.  Potential for online crowdsourced biological recording data to complement surveillance for arthropod vectors.

Authors:  Benjamin Cull
Journal:  PLoS One       Date:  2021-04-30       Impact factor: 3.240

6.  Pediatric Tularemia-A Case Series From a Single Center in Switzerland.

Authors:  Nina Schöbi; Philipp K A Agyeman; Andrea Duppenthaler; Andreas Bartenstein; Peter M Keller; Franziska Suter-Riniker; Kristina M Schmidt; Matthias V Kopp; Christoph Aebi
Journal:  Open Forum Infect Dis       Date:  2022-06-11       Impact factor: 4.423

7.  Long-term study of Borrelia and Babesia prevalence and co-infection in Ixodes ricinus and Dermacentor recticulatus ticks removed from humans in Poland, 2016-2019.

Authors:  Agnieszka Pawełczyk; Małgorzata Bednarska; Adrianna Hamera; Emilia Religa; Milena Poryszewska; Ewa J Mierzejewska; Renata Welc-Falęciak
Journal:  Parasit Vectors       Date:  2021-07-01       Impact factor: 3.876

8.  An outbreak of bovine babesiosis in February, 2019, triggered by above average winter temperatures in southern England and co-infection with Babesia divergens and Anaplasma phagocytophilum.

Authors:  Nicholas Johnson; L Paul Phipps; Harriet McFadzean; Alex M Barlow
Journal:  Parasit Vectors       Date:  2020-06-12       Impact factor: 3.876

9.  Are Orienteers Protected Enough against Tick Bites? Estimating Human Exposure to Tick Bites through a Participative Science Survey during an Orienteering Competition.

Authors:  Jonas Durand; Laure Bournez; Julien Marchand; Claire Schmid; Irene Carravieri; Béatrice Palin; Cyril Galley; Vincent Godard; Annick Brun-Jacob; Jean-François Cosson; Pascale Frey-Klett
Journal:  Int J Environ Res Public Health       Date:  2021-03-18       Impact factor: 3.390

  9 in total

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