Details

Title

Helmintofauna of turbot Scophthalmus maximus (Linnaeus, 1758) from the southern Baltic Sea including new data

Journal title

Polish Journal of Veterinary Sciences

Yearbook

2015

Numer

No 3

Publication authors

Divisions of PAS

Nauki Biologiczne i Rolnicze

Publisher

Polish Academy of Sciences Committee of Veterinary Sciences ; University of Warmia and Mazury in Olsztyn

Date

2015[2015.01.01 AD - 2015.12.31 AD]

Identifier

ISSN 1505-1773

References

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Schmidt (2003), von Parasites of flounder ( Platichthys flesusL from the German Bight North Sea and their potential use in biological effects monitoring C Pollution effects on the parasite community and a comparison to biomarker responses, Helgol Mar Res, 57, 262, doi.org/10.1007/s10152-003-0159-x ; Galli (2001), D Water quality as a determinant of the composition of fish parasite communities, Hydrobiologia, 452. ; Sanmartín Durán (1989), Some Spanish cestode fish parasites, J Fish Biol, 34, 977, doi.org/10.1111/j.1095-8649.1989.tb03384.x ; Studnicka (1965), Internal parasites of the cod Gadus callariasL from the Gdańsk Bay of the Baltic Sea, Acta Parasitol Pol, 13, 283. ; Nickol (2002), Corynosoma magdaleniin grey seals from the Gulf of Bothnia with emended description ofCorynosoma strumosumandCorynosoma magdaleni, J Parasitol, 88, 1222, doi.org/10.1645/0022-3395(2002)088[1222:CMIGSF]2.0.CO;2 ; Janiszewska (1938), Studien über die Entwicklung und die Lebensweise der parasitischen Würmer in der Flunder ( Pleuronectes flesusL ), Mém Acad Polon Sci Lettr, 14, 1. ; Iglesias (2001), Philasterides dicentrarchi Scuticociliatida ) as the causative agent of scuticociliatosis in farmed turbotScophthalmus maximusin Galicia, Dis Aquat Organ, 46, 47, doi.org/10.3354/dao046047 ; Nissling (2007), Feeding ecology of juvenile turbotScophthalmus maximusand flounderPleuronectes flesusat Gotland Central Baltic Sea, J Fish Biol, 70, 1877, doi.org/10.1111/j.1095-8649.2007.01463.x ; Valtonen (1988), Host - parasite relationships between two seal populations and two species ofCorynosoma in Finland, J Zool Lond, 214, 361, doi.org/10.1111/j.1469-7998.1988.tb04729.x ; Overstreet (1997), Parasitological data as monitors of environmental health, Parassitologia, 39, 169. ; Robert (1988), Importance of the paratenic host in the biology ofBothriocephalus gregarius Pseudophyllidea a parasite of the turbot, Int J Parasitol, 18, 611, doi.org/10.1016/0020-7519(88)90095-1 ; De Groot (1971), Bothriocephalus scorpii in turbotScophthalmus maximus and brillS rhombus from the southern North Sea, J Fish Biol, 3, 147, doi.org/10.1111/j.1095-8649.1971.tb03658.x ; Sulgostowska (1998), Helmith fauna of flounderPlatichthys flesus and turbotScophthalmus maximus from the Gulf of Gdańsk, Acta Ichthyol Piscat, 28, 69. ; Markowski (1935), Über den Entwicklungszyklus vonBothriocephalus scorpii, Bull Acad Polon Sci, 2, 1. ; Ramos (2007), Scuticociliate infection and pathology in cultured turbotScophthalmus maximusfrom the north of Portugal, Dis Aquat Organ, 74, 249, doi.org/10.3354/dao074249 ; Dzika (2009), Fish parasites as quality indicators of aquatic environment, Zool Pol, 54, 59. ; Markowski (1933), Die Eingeweidewürmer der Fische des polnischen Balticums, Arch Hydrobiol Ryb, 7, 1. ; Dyková (1994), Histopathological changes in turbotScophthalmus maximusdue to a histophagous ciliate, Dis Aquat Organ, 18, 5, doi.org/10.3354/dao018005 ; Sinisalo (2003), Corynosomaacanthocephalans in their paratenic fish hosts in the northern Baltic Sea, Parasite, 10, 227, doi.org/10.1051/parasite/2003103227 ; Saraiva (2011), Amyloodinium ocellatum in farmed turbot, Aquaculture, 320. ; Rolbiecki (2003), Diversity of the parasite fauna of cyprinid and percid fishes in the Vistula Lagoon Poland, Wiad Parazytol, 49, 125. ; Palenzuela (2002), Description ofEnteromyxum scophthalmigen nov sp nov an intestinal parasite of turbot ( Scophthalmus maximusL using morphological and ribosomal RNA sequence data, Parasitology, 124, 369, doi.org/10.1017/S0031182001001354 ; Malczewski (1962), Helminth parasites of bred foxes and minks in Poland, Acta Parasitol Pol, 10, 231. ; Sasal (2007), The use of fish parasites as biological indicators of anthropogenic influences in coral - reef lagoons : a case study of Apogonidae parasites in New - Caledonia, Mar Pollut Bull, 54, 1697, doi.org/10.1016/j.marpolbul.2007.06.014 ; Helle (1980), On the occurrence ofCorynosomaspp in ringed seals Pusa hispida ) in the Bothnian Bay Finland, Can J Zool, 58, 298, doi.org/10.1139/z80-035 ; Davey (1968), Bothriocephalus scorpii in turbot and brill from British coastal waters, J Mar Biol Ass UK, 48, 335, doi.org/10.1017/S0025315400034524 ; Sanmartín Durán (1989), a Nematode parasites of commercially important fish in NW Spain, Dis Aquat Organ, 7, 75, doi.org/10.3354/dao007075 ; Khan (1991), Influence of pollution on parasites of aquatic animals, Adv Parasitol, 30, 201, doi.org/10.1016/S0065-308X(08)60309-7 ; Stankus (2011), Research of helmintBothriocephalus scorpii infection in turbot Psetta maxima Vet, Med Zoot, 55, 60. ; MacKenzie (1995), Parasites as indicators of water quality and the potential use of helminth transmission in marine pollution studies, Adv Parasitol, 35, 85, doi.org/10.1016/S0065-308X(08)60070-6 ; Sulgostowska (1987), Helminth fauna of flatfish Pleuronectiformes from Gdańsk Bay and adjacent area ( south - east Baltic ), Acta Parasitol Pol, 31, 231. ; Skrzypczak (2014), Anisakids of seals found on the southern coast of Baltic Sea, Acta Parasitol, 59, 165, doi.org/10.2478/s11686-014-0226-2 ; Härkönen (1998), Population size and distribution of the Baltic ringed seal ( Phoca hispida botnica ), NAMMCO Sci Publ, 1, 167, doi.org/10.7557/3.2986

DOI

10.1515/pjvs-2015-0077

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