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Host reaction in paratenic fish hosts against 3rd stage larvae of Anguillicola crassus [PDF]

open access: yesDiseases of Aquatic Organisms, 1996
Many fish species of Lake Balaton (Hungary) serve as paratenic hosts for the 3rd stage larvae of the eel parasite Anguillicola crassus. The incidence oi different phases of the host reaction varies with paratenic fish host but its nature is basically the same.
Székely, Csaba   +2 more
exaly   +3 more sources
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Prey species of franciscana Pontoporia blainvillei as paratenic hosts of helminths

Diseases of Aquatic Organisms, 2017
The distribution of franciscana Pontoporia blainvillei Gervais & d'Orbigny, 1884, is restricted to the estuarine and coastal waters of the southwestern Atlantic. The diet of this dolphin is composed of fishes, squids, and shrimps, many of which harbor helminths that may infect franciscana.
Tony, Silveira   +4 more
openaire   +2 more sources

Histopathology of Nymphal Pentastomid Infections (Sebekia mississippiensis) in Paratenic Hosts

The Journal of Parasitology, 1991
The histopathologic alterations occurring in mice, hamsters, turtles, and a frog were described following experimental infection with nymphs of Sebekia mississippiensis. Initially, nymphal migration caused traumatic tissue damage and hemorrhage characteristic of larva migrans.
W M, Boyce, E A, Kazacos
openaire   +2 more sources

Small mammals: paratenic hosts for species ofToxocarain eastern Slovakia

Journal of Helminthology, 2012
AbstractToxocaraspp., an aetiological agent of a serious helminthozoonosis, is a common roundworm of domestic and wild carnivores worldwide. The study aimed to estimate the seroprevalence ofToxocarain small mammals from different localities in eastern Slovakia.
Antolová, D.   +5 more
openaire   +2 more sources

Toxocara canis infection in the paratenic host: a study on the chemosusceptibility of the somatic larvae in mice.

Veterinary Parasitology, 1998
A research on formulation and dosage strategies of anthelmintics have been conducted in mice experimentally infected with eggs of Toxocara canis. Multidose treatments commenced at days 2, 14, 81, 87 and 123 postinfection. Results indicated no detectable difference in the chemosusceptibility of the migrating early infection larvae and the resting ...
E. Fok, T. Kassai
semanticscholar   +3 more sources

Hairworm Infection and Seasonal Changes in Paratenic Hosts in a Mountain Stream in Japan

Journal of Parasitology, 2017
For parasites with complex life cycles, the ecological traits determining host competence and seasonal changes in infection in natural habitats are often unclear, making it difficult to predict infection dynamics, including disease outbreaks. Hairworms (phylum Nematomorpha) require both aquatic and terrestrial hosts to complete their life cycle ...
J, Yamashita, T, Sato, K, Watanabe
openaire   +2 more sources

Transmammary Infection of Paratenic and Definitive Hosts with Alaria marcianae (Trematoda) Mesocercariae

The Journal of Parasitology, 1983
Transmammary infection with Alaria marcianae mesocercariae was demonstrated using mice as model, paratenic hosts. Prenatal transmission was ruled out because neonates removed immediately postpartum from infected dams were never infected. Mesocercarial distribution in virgin females and in females examined immediately postpartum showed no marked ...
W L, Shoop, K C, Corkum
openaire   +2 more sources

Fish as Paratenic Hosts of Serpinema trispinosum (Leidy, 1852) (Nematoda: Camallanidae)

The Journal of Parasitology, 1998
Third-stage larvae of the nematode Serpinema trispinosum (Leidy, 1852) were collected from the intestine of the freshwater cichlid, Cichlasoma urophthalmus (Günther), from a small lake in Yucatan, Mexico. This is the first record of Serpinema larvae from fishes, and their presence may reflect the importance of fishes as paratenic hosts of turtle ...
F, Moravec   +2 more
openaire   +2 more sources

The common frog (Rana temporaria) as a potential paratenic and intermediate host forAngiostrongylus vasorum

Zeitschrift Für Parasitenkunde (Berlin, Germany), 1993
Common frogs (Rana temporaria) were exposed either to third-stage larvae (L3) or to first-stage larvae (L1) of Angiostrongylus vasorum. Following exposure to L3, viable larvae could be detected in the frogs for at least 2 weeks. Following exposure to L1, the frogs developed viable L3 in their tissues within 30 days.
F Frandsen
exaly   +3 more sources

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