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Full-Text Articles in Entomology

A Systematic Review And Meta-Analysis Of Mosquito Arboviral Infections Detected Through Xenosurveillance In Africa: A Focus On West Nile, Rift Valley Fever, And Chikungunya Virus Infections, Mxolisi Mgongoma, Armanda Bastos, Abel Ramoelo, David P. Tchouassi Jan 2026

A Systematic Review And Meta-Analysis Of Mosquito Arboviral Infections Detected Through Xenosurveillance In Africa: A Focus On West Nile, Rift Valley Fever, And Chikungunya Virus Infections, Mxolisi Mgongoma, Armanda Bastos, Abel Ramoelo, David P. Tchouassi

All Peer-Reviewed Publications

This systematic review and meta-analysis comprehensively evaluated the mosquito arboviral infections with West Nile virus (WNV), Rift Valley fever virus (RVFV), and chikungunya virus (CHIV), detected through xenosurveillance, reported in mosquito vectors across Africa in the last 25 years (2000–2024). The study analysed xenosurveillance data from 45 studies conducted with over 115,000 mosquito specimens, and incorporated moderator analyses to assess the influence of trap type, seasonality, regional location, settlement type, and screening methods on virus detection rates. The estimated pooled prevalence of WNV was 1.18% (95% CI: 0.60–3.43%), with higher rates observed in Culex quinquefasciatus and Culex pipiens, particularly in …


Stomoxys Flies (Diptera, Muscidae) Are Competent Vectors Of Trypanosoma Evansi, Trypanosoma Vivax, And Other Livestock Hemopathogens, Julia W. Muita, Joel L. Bargul, John Mark O. Makwatta, Ernest M. Ngatia, Simon K. Tawich, Daniel K. Masiga, Merid N. Getahun May 2025

Stomoxys Flies (Diptera, Muscidae) Are Competent Vectors Of Trypanosoma Evansi, Trypanosoma Vivax, And Other Livestock Hemopathogens, Julia W. Muita, Joel L. Bargul, John Mark O. Makwatta, Ernest M. Ngatia, Simon K. Tawich, Daniel K. Masiga, Merid N. Getahun

All Peer-Reviewed Publications

Stomoxys flies are widely distributed and economically significant vectors of various livestock pathogens of veterinary importance. However, the role of Stomoxys spp. in pathogen transmission is poorly understood. Therefore, we studied the feeding patterns of these blood feeders collected from specific locations in Kenya to identify various vertebrate hosts they fed on, the livestock hemopathogens they carried, and to elucidate their role in pathogens transmission. Our findings show that field-collected Stomoxys flies carried several pathogens, including Trypanosoma spp., Anaplasma spp., and Theileria spp., which were also detected in the blood of sampled livestock, namely camels and cattle. The findings on …


Machine Learning Predicts Non-Preferred And Preferred Vertebrate Hosts Of Tsetse Flies (Glossina Spp.) Based On Skin Volatile Emission Profiles, Olabimpe Y. Orubuloye, David P. Tchouassi, Abdullahi A. Yusuf, Christian W.W. Pirk, Daniel K. Masiga, Edward Kariuki, Baldwyn Torto Apr 2025

Machine Learning Predicts Non-Preferred And Preferred Vertebrate Hosts Of Tsetse Flies (Glossina Spp.) Based On Skin Volatile Emission Profiles, Olabimpe Y. Orubuloye, David P. Tchouassi, Abdullahi A. Yusuf, Christian W.W. Pirk, Daniel K. Masiga, Edward Kariuki, Baldwyn Torto

All Peer-Reviewed Publications

Tsetse fly vectors of African trypanosomosis preferentially feed on certain vertebrates largely determined by olfactory cues they emit. Previously, we established that three skin-derived ketones including 6-methyl-5-hepten-2-one, acetophenone and geranyl acetone accounted for avoidance of zebra by tsetse flies. Here, we tested the hypothesis that these three ketones serve as biomarkers for tsetse flies to distinguish between non-preferred- and preferred-vertebrate hosts. We used coupled gas chromatography/mass spectrometry to analyze and compare the skin volatile emissions of two non-preferred- (waterbuck and zebra) and four preferred- (buffalo, donkey, horse, warthog) vertebrate hosts in two wildlife parks in Kenya. We detected a total …


Challenges And Lessons From A Vector Control Campaign Targeting Glossina Palpalis Palpalis In An Isolated Protected Forest Area In Abidjan, Côte D’Ivoire, Yao Jean Rodrigue Konan, Bi Tra Dieudonné Ta, Djakaridja Berté, Bamoro Coulibaly, Kinifo Donatien Coulibaly, Nick Steven Egnankon, Foungniguée Diarrassouba, Kouassi Albert Djabo, Stéphanie Watier-Grillot, Jean Paul Demoncheaux, Koffi Alain De Marie Kouadio, Louis N’Dri, Philippe Solano, Sophie Ravel, Guy Pacôme Adingra, Antoine Barreaux, Adeline Ségard, Dramane Kaba, Vincent Jamonneau, Thierry De Meeûs, Vincent Djohan Jan 2025

Challenges And Lessons From A Vector Control Campaign Targeting Glossina Palpalis Palpalis In An Isolated Protected Forest Area In Abidjan, Côte D’Ivoire, Yao Jean Rodrigue Konan, Bi Tra Dieudonné Ta, Djakaridja Berté, Bamoro Coulibaly, Kinifo Donatien Coulibaly, Nick Steven Egnankon, Foungniguée Diarrassouba, Kouassi Albert Djabo, Stéphanie Watier-Grillot, Jean Paul Demoncheaux, Koffi Alain De Marie Kouadio, Louis N’Dri, Philippe Solano, Sophie Ravel, Guy Pacôme Adingra, Antoine Barreaux, Adeline Ségard, Dramane Kaba, Vincent Jamonneau, Thierry De Meeûs, Vincent Djohan

All Peer-Reviewed Publications

Vector control (VC) is one of the strategies employed to manage African trypanosomoses. This study aimed at assessing the effectiveness of a VC campaign against Glossina palpalis palpalis using tiny targets (TTs) impregnated with insecticide in an isolated, protected forest in Abidjan, Côte d’Ivoire, while considering ecological, genetic, and operational factors. Between January 2020 and September 2022, 2,712 TTs were deployed at 684 sites, covering a total area of 1.7 km2. VC monitoring was conducted using Vavoua traps during 12 evaluation surveys, between June 2020 and March 2023. Five months after the initial TT deployment, tsetse fly density had decreased …


A Review On Wolbachia- A Viable Alternative To Control Aedes-Born Arboviral Diseases, Fatima Khizar, Iqra Mushtaq, Hafsa Masud, Muhammad Sajjad Sarwar Dec 2024

A Review On Wolbachia- A Viable Alternative To Control Aedes-Born Arboviral Diseases, Fatima Khizar, Iqra Mushtaq, Hafsa Masud, Muhammad Sajjad Sarwar

Journal of Bioresource Management

The endemic geographic ranges of mosquitoes are expanding due to various anthropogenic activities including rapid international travel and trade, urbanization, deforestation, and global warming. Hence, Aedes-borne arboviral diseases like dengue, chikungunya, yellow fever, or Zika infections would cause severe future outbreaks in non-endemic regions of the world. This threat to global public health highlights an urgent need for the development of efficient and effective mosquito control strategies. To date, a large number of mosquito vector-control strategies have been developed. Each of them has its strengths and weaknesses but the use of intracellular, endosymbiotic reproductive parasitic bacteria named Wolbachia pipientis …


Lupin Root Diseases - Diagnosis And Management, Department Of Primary Industries And Regional Development, Western Australia Nov 2024

Lupin Root Diseases - Diagnosis And Management, Department Of Primary Industries And Regional Development, Western Australia

Grains and other field crops factsheets

Root, hypocotyl and stem base diseases can be significant problems in lupin crops, reducing stand density, plant vigour and yield. Root disease is present in nearly all narrow leafed lupin (Lupinus angustifolius) paddocks but in the majority of paddocks has only a small impact on crop development. However, in paddocks where high levels of root rot occurs, plant establishment, seedling vigour and crop yield can be significantly affected.

When a root disease is present in a crop very little can be done to manage it in that cropping season. It is therefore vital that the cause is correctly identified to …


An Overview Of Tsetse Fly Repellents: Identification And Applications, Olabimpe Y. Orubuloye, Njelembo J. Mbewe, David P. Tchouassi, Abdullahi A. Yusuf, Christian W.W. Pirk, Baldwyn Torto Nov 2024

An Overview Of Tsetse Fly Repellents: Identification And Applications, Olabimpe Y. Orubuloye, Njelembo J. Mbewe, David P. Tchouassi, Abdullahi A. Yusuf, Christian W.W. Pirk, Baldwyn Torto

All Peer-Reviewed Publications

Tsetse flies are vectors of the parasite trypanosoma that cause the neglected tropical diseases human and animal African trypanosomosis. Semiochemicals play important roles in the biology and ecology of tsetse flies. Previous reviews have focused on olfactory-based attractants of tsetse flies. Here, we present an overview of the identification of repellents and their development into control tools for tsetse flies. Both natural and synthetic repellents have been successfully tested in laboratory and field assays against specific tsetse fly species. Thus, these repellents presented as innovative mobile tools offer opportunities for their use in integrated disease management strategies.


Bean Yellow Mosaic Virus And Its Management In Lupins, Department Of Primary Industries And Regional Development, Western Australia Sep 2024

Bean Yellow Mosaic Virus And Its Management In Lupins, Department Of Primary Industries And Regional Development, Western Australia

Grains and other field crops factsheets

Bean yellow mosaic virus (BYMV) is an aphid-transmitted virus that commonly causes necrotic symptoms that kills lupin plants when infected early before pod set. When plants are infected after pod set, black pods develop (known as black pod syndrome).

BYMV is found predominantly in high rainfall areas of the Western Australian (WA) grainbelt. This page outlines the symptoms, diagnosis, factors favouring disease risk and spread, yield and quality impacts, and management for BYMV in lupin crops in WA


Wheat Streak Mosaic Virus And Wheat Curl Mite And Their Management, Department Of Primary Industries And Regional Development, Western Australia Sep 2024

Wheat Streak Mosaic Virus And Wheat Curl Mite And Their Management, Department Of Primary Industries And Regional Development, Western Australia

Grains and other field crops factsheets

Wheat streak mosaic virus (WSMV) is a seed and mite-borne virus that infects wheat, causing severe leaf symptoms and reduced yields. The symptoms and damage are more severe in wheat than other hosts, in which infection is symptomless.

Wheat streak mosaic virus can cause crop failure when widespread infection occurs in seedling wheat, particularly when a heavily WSMV-infected green bridge is not controlled before sowing an early crop, and warm temperatures favour mites.

Wheat curl mite (Aceria tosichella) is the only known vector of WSMV. It can transmit the virus in its nymph and adult stages.


Managing Aphids And Viruses In Lupins, Department Of Primary Industries And Regional Development, Western Australia Sep 2024

Managing Aphids And Viruses In Lupins, Department Of Primary Industries And Regional Development, Western Australia

Grains and other field crops factsheets

Aphids reduce yields by direct feeding damage, which causes flower and pod abortion and occasionally plant death in lupins. The extent of damage varies between seasons, but losses can be severe in years that favour aphid population development.

Lupins are most vulnerable to aphids during budding and flowering, as severe feeding damage on growing tips can cause buds to drop, flowers to abort, and reduced pod set. Some lupin varieties are more susceptible to aphids than others.

Aphids transmit serious virus diseases, which reduce yields and contaminate seed stocks. Some species of aphids are more difficult to control than others.


Concepts In Animal Parasitology: Master Bibliography, Sue Ann Gardner May 2024

Concepts In Animal Parasitology: Master Bibliography, Sue Ann Gardner

Concepts in Animal Parasitology

Master bibliography for the open educational resource/open access textbook Concepts in Animal Parasitology, Scott L. Gardner and Sue Ann Gardner, editors, published by Zea Books, Lincoln, Nebraska, United States, 2024. This includes the references from literature cited and suggested supplemental reading.


Short-Term Larval Surveys Reveal Rainy Season Breeding Site Preferences Of Malaria Vector Anopheles Spp. In Zanzibar City, Kaeden K. Hill Apr 2024

Short-Term Larval Surveys Reveal Rainy Season Breeding Site Preferences Of Malaria Vector Anopheles Spp. In Zanzibar City, Kaeden K. Hill

Independent Study Project (ISP) Collection

Malaria is a serious illness that causes over 500,000 deaths annually worldwide, with Tanzania alone contributing to approximately 4% of those deaths. Malaria is caused by Plasmodium spp. parasites, and it is vectored by mosquitoes in the Anopheles genus. In Zanzibar City, the incidence of malaria has decreased over the past few decades due to standardized treatment protocols and public health interventions targeting adult mosquitoes. However, the incidence remains between 1-2%, with an increasing trend observed over the past few years likely stemming from continued exchange of Plasmodium spp. from other malaria-endemic areas. Because larvicidal strategies can be useful in …


In Silico Analysis Of C-Type Lectins As Co-Infection Receptors Of Dengue And Chikungunya Viruses In Aedes Aegypti, Munawir Sazali, R. C. Hidayat Soesilohadi, Nastiti Wijayanti, Tri Wibawa, Arif Nur Muhammad Ansori Mar 2024

In Silico Analysis Of C-Type Lectins As Co-Infection Receptors Of Dengue And Chikungunya Viruses In Aedes Aegypti, Munawir Sazali, R. C. Hidayat Soesilohadi, Nastiti Wijayanti, Tri Wibawa, Arif Nur Muhammad Ansori

Makara Journal of Science

Aedes aegypti is a primer vector of dengue virus (DENV) and chikungunya virus (CHIKV). The susceptibility of mosquitoes to DENV and CHIKV depends on their recognition receptor of pathogens. C-type lectins (CTLs) are an important mediator of virus infection in A. aegypti. This study aims to identify potential receptors and determine the binding affinity between ligand–receptor interaction, CTLs and virus envelopes (DENV-1, 2, 3, and 4 and CHIKV) interaction based on in silico analysis. Sample sequences were obtained from GenBank (NCBI), and 10 CTLs were acquired from VectorBase. Homology modeling based on a minimum standard of 20% was processed …


Concepts In Animal Parasitology, Chapter 61: Transversotrematidae Witenberg, 1944 (Family): Ectoparasitic Trematodes [Platyhelminthes], Scott C. Cutmore, Thomas H. Cribb Jan 2024

Concepts In Animal Parasitology, Chapter 61: Transversotrematidae Witenberg, 1944 (Family): Ectoparasitic Trematodes [Platyhelminthes], Scott C. Cutmore, Thomas H. Cribb

Concepts in Animal Parasitology

An overview of the family Transversotrematidae Witemberg, 1944, a small but biologically significant group of plagiorchiid digenean trematodes (flukes), including discussion of identification, general morphology, life cycles, host range, and the significance of their evolutionary position and biology.

Chapter 61 in Concepts in Animal Parasitology, by Scott C. Cutmore and Thomas H. Cribb. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap061


Concepts In Animal Parasitology, Chapter 62: Hirudinea (Subclass): Parasitic Leeches, Alejandro Oceguera-Figueroa, Sebastian Kvist Jan 2024

Concepts In Animal Parasitology, Chapter 62: Hirudinea (Subclass): Parasitic Leeches, Alejandro Oceguera-Figueroa, Sebastian Kvist

Concepts in Animal Parasitology

An overview of the parasitic leeches, subclass Hirudinea, including discussion of leeches as parasites, vectors, and hosts, their general morphology, reproduction, zoogeography, classification, phylogeny, medical uses, and preparation of specimens.

Chapter 62 in Concepts in Animal Parasitology, by Alejandro Oceguera-Figueroa and Sebastian Kvist. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap062


Concepts In Animal Parasitology, Chapter 39: Haplosplanchnata Olson Et Al., 2003 (Suborder): Two Hosts With Half The Guts [Platyhelminthes, Trematoda, Digenea, Plagiorchiida], Daniel C. Huston Jan 2024

Concepts In Animal Parasitology, Chapter 39: Haplosplanchnata Olson Et Al., 2003 (Suborder): Two Hosts With Half The Guts [Platyhelminthes, Trematoda, Digenea, Plagiorchiida], Daniel C. Huston

Concepts in Animal Parasitology

An overview of the suborder Haplosplanchnata Olson et al., 2003, a small, but distinct lineage within the Plagiorchiida. Includes a discussion of the methods of identification, general morphological characteristics, taxonomy, and life cycles.

Chapter 39 in Concepts in Animal Parasitology, by Daniel C. Huston. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap039


Concepts In Animal Parasitology, Chapter 47: Summary Of The Digenea (Subclass): Insights And Lessons From A Prominent Parasitologist [Platyhelminthes, Trematoda, Digenea], Robin M. Overstreet Jan 2024

Concepts In Animal Parasitology, Chapter 47: Summary Of The Digenea (Subclass): Insights And Lessons From A Prominent Parasitologist [Platyhelminthes, Trematoda, Digenea], Robin M. Overstreet

Concepts in Animal Parasitology

An overview of the digenean trematodes (subclass Digenea) including insights and lessons from a prominent parasitologist, Robin M. Overstreet. Includes discussion of general morphology, biology, preparation methods, phylogeny, classification, life cycles, host-digenean relationships, effects on host behavior, hyperparasitism, ecology, digeneans as indicators, and literature on the digeneans.

Chapter 47 in Concepts in Animal Parasitology, by Robin M. Overstreet. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap047


Concepts In Animal Parasitology, Chapter 60: Monogenea Van Beneden, 1858 (Class) [Platyhelminthes], Griselda Pulido-Flores Jan 2024

Concepts In Animal Parasitology, Chapter 60: Monogenea Van Beneden, 1858 (Class) [Platyhelminthes], Griselda Pulido-Flores

Concepts in Animal Parasitology

An overview of the class Monogenea van Beneden, 1858, mainly ectoparasites of the skin, fins, gills, and urinary bladder of fishes, amphibians, and some reptiles. Includes discussion of their classification (both historical and current), general morphology, life cycles, and taxonomy.

Chapter 60 in Concepts in Animal Parasitology, by Griselda Pulido-Flores. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap060


Concepts In Animal Parasitology, Chapter 64: Phthiraptera (Order): Lice [Arthropoda], Lajos Rózsa, Haylee J. Weaver Jan 2024

Concepts In Animal Parasitology, Chapter 64: Phthiraptera (Order): Lice [Arthropoda], Lajos Rózsa, Haylee J. Weaver

Concepts in Animal Parasitology

An overview of lice, order Phthiraptera, including discussion of their general morphology, feeding, host range, host distribution, life cycle, macroecology, transmission, effects on hosts and role as vectors, host defenses, conservation, evolutionary origins, phylogeny, lice nuclear genome, taxonomy, and medical implications including their control.

Chapter 64 in Concepts in Animal Parasitology, by Lajos Rózsa and Haylee J. Weaver. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap064


Concepts In Animal Parasitology, Chapter 07: Biostatistics For Parasitologists: A Painless Introduction [Parascript Approaches], Jenő Reiczigel, Marco Marozzi, Fábián Ibolya, Lajos Rózsa Jan 2024

Concepts In Animal Parasitology, Chapter 07: Biostatistics For Parasitologists: A Painless Introduction [Parascript Approaches], Jenő Reiczigel, Marco Marozzi, Fábián Ibolya, Lajos Rózsa

Concepts in Animal Parasitology

Covers biostatistics for parasitologists and includes discussion of taking samples, frequency distribution of host individuals across infection classes, sample size, prevalence, mean intesity, median intensity, stochasic equality of intensities, abundance, crowding, levels of aggregation, parasite sex ratio, parasite species richness, interactions between parasite species, and the tool Quantitative Parasitology on the Web (QPweb).

Chapter 7 in Concepts in Animal Parasitology on biostatistics for parasitologists by Jenő Reiczigel, Marco Marozzi, Fábián Ibolya, and Lajos Rózsa. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap007


Concepts In Animal Parasitology, Chapter 58: Acanthocephala Rudolphi, 1808 (Phylum), Scott Monks Jan 2024

Concepts In Animal Parasitology, Chapter 58: Acanthocephala Rudolphi, 1808 (Phylum), Scott Monks

Concepts in Animal Parasitology

An overview of the phylum Acanthocephala Rudolphi, 1808, also called the thorny-headed or spiny-headed worms, including discussion of their general morphology, life cycles, classification, and phylogenetic relationships.

Chapter 58 in Concepts in Animal Parasitology, by Scott Monks. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap058


Concepts In Animal Parasitology, Chapter 34: Introduction To Diplostomida Olson Et Al., 2003 (Order) [Platyhelminthes, Trematoda, Digenea, Diplostomida], Lucrecia Acosta Soto, Bernard Fried, Rafael Toledo Jan 2024

Concepts In Animal Parasitology, Chapter 34: Introduction To Diplostomida Olson Et Al., 2003 (Order) [Platyhelminthes, Trematoda, Digenea, Diplostomida], Lucrecia Acosta Soto, Bernard Fried, Rafael Toledo

Concepts in Animal Parasitology

An introduction to the trematode (fluke) order Diplostomida Olson et al., 2003, one of the two main lineages from which subclass Digenea have diversified. Includes a discussion of Diplostomida systematics, general morphology, and human pathogenesis, including schistosomiasis.

Chapter 34 in Concepts in Animal Parasitology, by Lucrecia Acosta Soto, Bernard Fried, and Rafael Toledo. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap034


Concepts In Animal Parasitology, Chapter 52: Oxyurida (Order): Pinworms [Nemata, Secernentea], Haylee J. Weaver Jan 2024

Concepts In Animal Parasitology, Chapter 52: Oxyurida (Order): Pinworms [Nemata, Secernentea], Haylee J. Weaver

Concepts in Animal Parasitology

An overview of the pinworms, order Oxyurida, discussing their key features, life history, ecology, health effects on hosts, systematics, taxonomy, and including summaries of the main groups.

Chapter 52 in Concepts in Animal Parasitology, by Haylee J. Weaver. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap052


Concepts In Animal Parasitology, Part 5: Ectoparasites, Griselda Pulido-Flores, Scott C. Cutmore, Thomas H. Cribb, Alejandro Oceguera-Figueroa, Sebastian Kvist, Marcela Lareschi, Lajos Rózsa, Haylee J. Weaver, Sue Ann Gardner, Darci Moraes Barros-Battesti, Valeria Castilho Onofrio, Filipe Dantas-Torres Jan 2024

Concepts In Animal Parasitology, Part 5: Ectoparasites, Griselda Pulido-Flores, Scott C. Cutmore, Thomas H. Cribb, Alejandro Oceguera-Figueroa, Sebastian Kvist, Marcela Lareschi, Lajos Rózsa, Haylee J. Weaver, Sue Ann Gardner, Darci Moraes Barros-Battesti, Valeria Castilho Onofrio, Filipe Dantas-Torres

Concepts in Animal Parasitology

Part V: Ectoparasites, chapters 60–67, pages 732–841, in Concepts in Animal Parasitology. 2024. Scott L. Gardner and Sue Ann Gardner, editors. Zea Books, Lincoln, Nebraska, United States; part V doi: 10.32873/unl.dc.ciap075

Platyhelminthes

Chapter 60: Monogenea van Beneden, 1858 (Class) by Griselda Pulido-Flores, pages 733–742

Chapter 61: Transversotrematidae Witenberg, 1944 (Family): Ectoparasitic Trematodes by Scott C. Cutmore and Thomas H. Cribb, pages 743–746

Hirudinea

Chapter 62: Hirudinea (Subclass): Parasitic Leeches by Alejandro Oceguera-Figueroa and Sebastian Kvist, pages 747–755

Arthropoda

Chapter 63: Siphonaptera Latreille, 1825 (Order): Fleas by Marcela Lareschi, pages 756–770

Chapter 64: Phthiraptera (Order): Lice by Lajos Rózsa and Haylee …


Concepts In Animal Parasitology, Chapter 33: Aspidogastrea (Subclass) [Platyhelminthes, Trematoda, Aspidogastrea], Klaus Rohde Jan 2024

Concepts In Animal Parasitology, Chapter 33: Aspidogastrea (Subclass) [Platyhelminthes, Trematoda, Aspidogastrea], Klaus Rohde

Concepts in Animal Parasitology

An overview of the trematode (fluke) subclass Aspidogastrea, a very small group of trematodes with around 80 species, none of them of economic importance, but are of great interest because of their unique structure, their simple life cycles (which may well be the most primitive or ancestral one among the trematodes, and the extraordinarily complex sensory/nervous systems found in some species. Includes a desciption of their general morphology, life cycles, taxonomy and phylogeny, infection process, localization in the host, and ecological infection dynamics.

Chapter 33 in Concepts in Animal Parasitology by Klaus Rohde. 2024. S. L. Gardner and S. A. …


Concepts In Animal Parasitology, Chapter 19: Echinococcus (Genus) [Platyhelminthes, Cestoda, Eucestoda], Akira Ito, Scott L. Gardner Jan 2024

Concepts In Animal Parasitology, Chapter 19: Echinococcus (Genus) [Platyhelminthes, Cestoda, Eucestoda], Akira Ito, Scott L. Gardner

Concepts in Animal Parasitology

Discusses the cestode (tapeworm) genus Echinococcus, several species of which infect humans, including their general morphology, taxonomy, systematics, life cycles, host range, and medical and veterinary importance.

Chapter 19 in Concepts in Animal Parasitology on the family Proteocephalidae La Rue, 1911 by Tomáš Scholz and Roman Kuchta. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap019


Concepts In Animal Parasitology, Chapter 21: Bothriocephalidea Kuchta Et Al., 2008 (Order) [Platyhelminthes, Cestoda, Eucestoda], Jorge Falcón-Ordaz, Luis García-Prieto Jan 2024

Concepts In Animal Parasitology, Chapter 21: Bothriocephalidea Kuchta Et Al., 2008 (Order) [Platyhelminthes, Cestoda, Eucestoda], Jorge Falcón-Ordaz, Luis García-Prieto

Concepts in Animal Parasitology

An overview of the cestode (tapeworm) order Bothriocephalidea Kuchta et al., 2008, including a discussion of the main morphological characteristics, the description and summary of a representative species, Schyzocotyle acheilognathi (Yamaguti, 1934) Brabec et al., 2015 (also known as the Asian fish tapeworm), including its prevalence, life cycles, host range, and zoogeography.

Chapter 21 in Concepts in Animal Parasitology by Jorge Falcón-Ordaz and Luis García-Prieto. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap021


Concepts In Animal Parasitology, Chapter 41: Monorchiata Olson Et Al., 2003 (Suborder): Two Families Separated By Salinity [Platyhelminthes, Trematoda, Digenea, Plagiorchiida], Nicholas Q.-X. Wee Jan 2024

Concepts In Animal Parasitology, Chapter 41: Monorchiata Olson Et Al., 2003 (Suborder): Two Families Separated By Salinity [Platyhelminthes, Trematoda, Digenea, Plagiorchiida], Nicholas Q.-X. Wee

Concepts in Animal Parasitology

An overview of the speciose trematode (fluke) suborder Monorchiata Olson et al., 2003, which parasitizes fishes as adults. Includes general morphology, systematics, taxonomy, life cycles, and biogeography for several groups.

Chapter 41 in Concepts in Animal Parasitology, by Nicholas Q.-X. Wee. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap041


Concepts In Animal Parasitology, Chapter 66: Ixodida Leach, 1815 (Order): Ticks -- Keys To The Ticks [Arthropoda], Darci Moraes Barros-Battesti, Valeria Castilho Onofrio, Filipe Dantas-Torres Jan 2024

Concepts In Animal Parasitology, Chapter 66: Ixodida Leach, 1815 (Order): Ticks -- Keys To The Ticks [Arthropoda], Darci Moraes Barros-Battesti, Valeria Castilho Onofrio, Filipe Dantas-Torres

Concepts in Animal Parasitology

Chapter 66: Ixodida Leach, 1815 (Order): Ticks -- Keys to the Ticks by Darci Moraes Barros-Battesti, Valeria Castilho Onofrio, and Filipe Dantas-Torres.

Supplement to chapter 66 in Concepts in Animal Parasitology. 2024. Scott L. Gardner and Sue Ann Gardner, editors. Zea Books, Lincoln, Nebraska, United States.


Concepts In Animal Parasitology, Chapter 67: Acari Leach, 1817 (Subclass): Mites [Arthropoda], David Evans Walter, Gerald W. Krantz, Evert E. Lindquist Jan 2024

Concepts In Animal Parasitology, Chapter 67: Acari Leach, 1817 (Subclass): Mites [Arthropoda], David Evans Walter, Gerald W. Krantz, Evert E. Lindquist

Concepts in Animal Parasitology

A very brief overview from open access sources about mites (subclass Acari Leach, 1817), including discussion of general identifying characteristics, biology, life cycle, scabies (cause by Sarcoptes scabiei var. hominis), and phylogenetic relationships (through 1996).

Chapter 67 in Concepts in Animal Parasitology, by David Evans Walter, Gerald W. Krantz, and Evert E. Lindquist. 2024. S. L. Gardner and S. A. Gardner, editors. Zea Books, Lincoln, Nebraska, United States. doi: 10.32873/unl.dc.ciap067