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Body louse

From Wikipedia, the free encyclopedia
Subspecies of insect
This article is about the animal. For the infestation caused by body lice, seePediculosis corporis.
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Body louse
Scientific classificationEdit this classification
Domain:Eukaryota
Kingdom:Animalia
Phylum:Arthropoda
Class:Insecta
Order:Psocodea
Family:Pediculidae
Genus:Pediculus
Species:
Subspecies:
P. h. humanus
Trinomial name
Pediculus humanus humanus

Thebody louse (Pediculus humanus humanus, also known asPediculus humanus corporis) or thecootie is ahematophagicectoparasitelouse that infests humans.[1] It is one of three lice which infest humans, the other two being thehead louse, and thecrab louse or pubic louse.[2]

Body lice may lay eggs on the host hairs and clothing,[3] but clothing is where the majority of eggs are usually secured.[4]

Since body lice cannot jump or fly, they spread by direct contact with another person or more rarely by contact with clothing or bed sheets that are infested.[5]

Body lice are diseasevectors and can transmit pathogens that cause human diseases such asepidemic typhus,trench fever, andrelapsing fever.[6] In developed countries, infestations are only a problem in areas of poverty where there is poor body hygiene, crowded living conditions, and a lack of access to clean clothing.[7] Outbreaks can also occur in situations where large groups of people are forced to live in unsanitary conditions. These types of outbreaks are seen globally in prisons, homeless populations, refugees of war, or when natural disasters occur and proper sanitation is not available.[8]

Life cycle and morphology

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Pediculus humanus humanus (the body louse) is indistinguishable in appearance fromPediculus humanus capitis (thehead louse), and the two subspecies will interbreed under laboratory conditions.[9] In their natural state, however, they occupy different habitats and do not usually meet.[10] They can feed up to five times a day.[11] Adults can live for about thirty days, but if they are separated from their host they will die within two days.[12] If the conditions are favorable, the body louse can reproduce rapidly. After the final molt, female and male lice will mate immediately. A female louse can lay up to 200–300 eggs during her lifetime.[13]

The life cycle of the body louse consists of three stages: egg, nymph, and adult.

  1. Eggs (also called nits, seehead louse nits) are attached to the clothes or hairs by the female louse, using a secretion of the accessory glands that holds the egg in place until it hatches, while the nits (empty egg shells) may remain for months on the clothing. They are oval and usually yellow to white in color and at optimal temperature and humidity, the new lice will hatch from the egg within 6 to 9 days after being laid.[14]
  2. Anymph is an immature louse that hatches from the egg. Immediately after hatching it starts feeding on the host's blood and then returns to the clothing until the next blood-meal. The nymph will molt three times before theadult louse emerges. The nymph usually takes 9–12 days to develop into an adult louse.[14]
  3. Theadult body louse is about 2.5–3.5 mm long, and like a nymph it has six legs. It is wingless and is tan to grayish-white in color.
Life cycle ofPediculus humanus capitis, which is similar to the body louse. The location of the body louse eggs differs from that of head louse eggs. The head louse will lay eggs on hair roots, whereas a body louse will lay eggs in articles of clothing. This picture represents the louse from egg to adult and the process of going through three molts to achieve adulthood.

The twoP. humanussubspecies are morphologically quite identical. Their heads are short with two antennae that are split into five segments each, compacted thorax, seven segmented abdomen with lateral paratergal plates.[14]

Origins

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The body louse diverged from the head louse around 170,000 years ago, establishing the latest date for the adoption of clothing by humans.[15][16][17][18] Body lice were first described byCarl Linnaeus in the 10th edition ofSystema Naturae. The human body louse had itsgenome sequenced in 2010, and at that time it had the smallest known insect genome.[19]The body louse belongs to the phylumArthropoda, classInsecta, orderPsocodea and familyPediculidae. There are roughly 5,000 species of lice described, with 4,000 parasitizing birds and an additional 800 special parasites of mammals worldwide.[20] Lice on mammals originate on a common ancestor that lived onAfrotheria that originally acquired it from via host-switching from an ancient avian host.[21]

Signs and symptoms

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Since an infestation can include thousands of lice, with each of them biting five times a day, the bites can cause strong itching, especially at the beginning of the infestation, that can result in skin excoriations and secondary infections.[5] If an individual is exposed to a long-term infestation, they may experience apathy, lethargy and fatigue.[citation needed]

Treatment

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In principle, body louse infestations can be controlled by periodically changing clothes and bedding. Thereafter, clothes, towels, and bedding should be washed in hot water (at least 50 °C or 122 °F) and dried using a hot cycle.[22] The itching can be treated with topical and systemiccorticosteroids andantihistamines.[23] In case of secondary infections, antibiotics can be used to control the bacterial infection. When regular changing of clothes and bedding is not possible, the infested items could be treated withinsecticides.[22]

Diseases caused

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Unlike other species of lice, body lice can act as vectors of disease. The most important pathogens which are transmitted by them areRickettsia prowazekii (causesepidemic typhus),Borrelia recurrentis (causesrelapsing fever), andBartonella quintana (causestrench fever).

Epidemic typhus can be treated with one dose ofdoxycycline, but if left untreated, the fatality rate is 30%.[14] Relapsing fever can be treated withtetracycline and depending on the severity of the disease, if left untreated it has a fatality rate between 10 and 40%.[14] Trench fever can be treated with either doxycycline orgentamicin, if left untreated the fatality rate is less than 1%.[14]

See also

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References

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  1. ^Zimmer, Carl (8 November 2023)."Lice Genes Offer Clues to Ancient Human History - The jumpy parasites have followed our ancestors around for at least 25 million years, adapting along with us through major upheavals".The New York Times.Archived from the original on 9 November 2023. Retrieved9 November 2023.
  2. ^Prevention, CDC-Centers for Disease Control and (2021-01-11)."CDC - Lice".www.cdc.gov.Archived from the original on 2020-04-06. Retrieved2024-05-03.
  3. ^Sulica, VI; Graham, JH (August 1981). "Generalized pediculosis corporis. Microscopic study of hairs".Journal of Cutaneous Pathology.8 (4):308–11.doi:10.1111/j.1600-0560.1981.tb01015.x.PMID 7309944.
  4. ^Nuttall, George H. F. (November 1917)."The Biology of Pediculus humanus".Parasitology.10 (1):80–185.doi:10.1017/S0031182000003747.ISSN 0031-1820.Archived from the original on 2024-07-26. Retrieved2024-01-03.
  5. ^ab"Body Lice".medlineplus.gov.Archived from the original on 2024-05-03. Retrieved2024-05-03.
  6. ^Prevention, CDC-Centers for Disease Control and (2021-07-08)."CDC - Lice - Body Lice - Frequently Asked Quesetions (FAQs)".www.cdc.gov.Archived from the original on 2020-11-12. Retrieved2024-05-03.
  7. ^Powers, Jim; Badri, Talel (2020),"Pediculosis Corporis",StatPearls, StatPearls Publishing,PMID 29489282,archived from the original on 2021-11-02, retrieved2020-02-08
  8. ^"Lice (Phthiraptera) - Factsheet for health professionals".www.ecdc.europa.eu. 2022-02-15.Archived from the original on 2024-06-11. Retrieved2024-05-03.
  9. ^Tovar-Corona, Jaime M.; Castillo-Morales, Atahualpa; Chen, Lu; Olds, Brett P.; Clark, John M.; Reynolds, Stuart E.; Pittendrigh, Barry R.; Feil, Edward J.; Urrutia, Araxi O. (2015)."Alternative Splice in Alternative Lice".Molecular Biology and Evolution.32 (10):2749–2759.doi:10.1093/molbev/msv151.ISSN 0737-4038.PMC 4576711.PMID 26169943.
  10. ^"Head and body lice appear to be the same species, genetic study finds".ScienceDaily.Archived from the original on 2024-05-03. Retrieved2024-05-03.
  11. ^Powers, Jim; Badri, Talel (2024),"Pediculosis Corporis",StatPearls, Treasure Island (FL): StatPearls Publishing,PMID 29489282,archived from the original on 2021-11-02, retrieved2024-05-03
  12. ^Prevention, CDC-Centers for Disease Control and (2019-09-12)."CDC - Lice - Body Lice - Biology".www.cdc.gov.Archived from the original on 2024-05-03. Retrieved2024-05-03.
  13. ^"Body Lice".www.nyc.gov.Archived from the original on 2024-05-03. Retrieved2024-05-03.
  14. ^abcdefRaoult, Didier; Roux, Veronique (1999)."The Body Louse as a Vector of Reemerging Human Diseases".Clinical Infectious Diseases.29 (4):888–911.doi:10.1086/520454.ISSN 1058-4838.PMID 10589908.
  15. ^Ralf Kittler; Manfred Kayser; Mark Stoneking (2003)."Molecular evolution ofPediculus humanus and the origin of clothing"(PDF).Current Biology.13 (16):1414–1417.Bibcode:2003CBio...13.1414K.doi:10.1016/S0960-9822(03)00507-4.PMID 12932325.S2CID 15277254. Archived from the original on 2007-07-10. Retrieved2008-09-01.{{cite journal}}: CS1 maint: bot: original URL status unknown (link)
  16. ^Stoneking, Mark."Erratum: Molecular evolution ofPediculus humanus and the origin of clothing". RetrievedMarch 24, 2008.Archive
  17. ^"Lice DNA study shows humans first wore clothes 170,000 years ago". January 7, 2011.Archived from the original on November 15, 2019. RetrievedNovember 26, 2022.
  18. ^Toups, MA; Kitchen, A; Light, JE; Reed, DL (2010)."Origin of Clothing Lice Indicates Early Clothing Use by Anatomically Modern Humans in Africa".Molecular Biology and Evolution.28 (1):29–32.doi:10.1093/molbev/msq234.PMC 3002236.PMID 20823373.
  19. ^Kirkness EF, Haas BJ, et al. (2010)."Genome sequences of the human body louse and its primary endosymbiont provide insights into the permanent parasitic lifestyle".Proceedings of the National Academy of Sciences.107 (27):12168–12173.Bibcode:2010PNAS..10712168K.doi:10.1073/pnas.1003379107.ISSN 0027-8424.PMC 2901460.PMID 20566863.
  20. ^Smith, V.S; Broom, Y.; Dalgleish, R."Phthiraptera.info". International Society of Phthirapterists.Archived from the original on 23 November 2021. Retrieved23 November 2021.
  21. ^Johnson, Kevin P.; Matthee, Conrad; Doña, Jorge (2022). "Phylogenomics reveals the origin of mammal lice out of Afrotheria".Nature Ecology & Evolution.6 (8):1205–1210.Bibcode:2022NatEE...6.1205J.doi:10.1038/s41559-022-01803-1.ISSN 2397-334X.PMID 35788706.
  22. ^ab"Body lice-Body lice - Diagnosis & treatment".Mayo Clinic.Archived from the original on 2024-05-03. Retrieved2024-05-03.
  23. ^"Body Lice (Pediculosis): Symptoms, Treatment & Prevention".Cleveland Clinic.Archived from the original on 2024-05-03. Retrieved2024-05-03.

External links

[edit]
Human lice and pediculosis
Species
Infestation
Treatment
Other terms of interest
Arthropods andectoparasite-borne diseases and infestations
Insecta
Louse
Hemiptera
Fly
Flea
Crustacea
Pentastomida
ExtantPsocodea families
SuborderTrogiomorpha
Atropetae
Prionoglaridetae
Psyllipsocetae
SuborderTroctomorpha
Amphientometae
Nanopsocetae
Phthiraptera
(lice)
Amblycera
Anoplura
(sucking lice)
Ischnocera
(paraphyletic)
Rhyncophthirina
SuborderPsocomorpha
Archipsocetae
Caeciliusetae
Epipsocetae
Homilopsocidea
Philotarsetae
Psocetae
Order Psocodea is comprised of paraphyleticPsocoptera (book lice or bark lice) and monophyleticPhthiraptera (lice), both previously classified as orders.
Pediculus humanus humanus
Authority control databases: NationalEdit this at Wikidata
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