Analyze Diet

Topic:Nematodes

Nematodes are parasitic worms that can infect horses, affecting their health and well-being. These parasites typically inhabit the gastrointestinal tract of equines, where they can cause a variety of health issues. Common nematodes affecting horses include strongyles, ascarids, and pinworms. The presence and load of nematodes in horses can lead to symptoms such as weight loss, colic, and diarrhea, and can impact overall performance and health. Monitoring and managing nematode infections is an important aspect of equine veterinary care. This page compiles peer-reviewed research studies and scholarly articles that explore the biology, epidemiology, and management strategies of nematode infections in horses.
Facing the threat of equine parasitic disease.
Equine veterinary journal    May 20, 2011   Volume 43, Issue 2 126-132 doi: 10.1111/j.2042-3306.2010.00356.x
Matthews JB.Horses worldwide are exposed to a complex mixture of intestinal parasitic helminths. When burdens are high, these parasites can seriously compromise health and welfare. Some helminth species have an extremely high prevalence and are difficult to control, not least because there is a limited understanding of their most basic biology. Furthermore, levels of resistance to some of the commonly used anthelmintics are widespread and increasing. The cyathostomins are the most common nematode species affecting equids worldwide. Within this group of parasites are more than 50 different species. Until r...
β-Tubulin genotypes in six species of cyathostomins from anthelmintic-naive Przewalski and benzimidazole-resistant brood horses in Ukraine.
Parasitology research    May 7, 2011   Volume 109, Issue 4 1199-1203 doi: 10.1007/s00436-011-2426-0
Blackhall WJ, Kuzmina T, von Samson-Himmelstjerna G.Resistance to benzimidazoles (BZ) in the gastrointestinal nematodes of livestock is characterised by the presence of specific polymorphisms in the β-tubulin isotype 1 protein, a component of microtubules. The most prevalent polymorphism associated with resistance in nematodes infecting cattle, sheep, and goats is found at codon 200, with minor occurrences of polymorphisms at codons 167 and 198. In the cyathostomins that infect horses, however, a polymorphism at codon 167 appears to be more common than the codon 200 polymorphism. In the present study, a focussed analysis of PCR-amplified β-tu...
Further evaluation in field tests of the activity of three anthelmintics (fenbendazole, oxibendazole, and pyrantel pamoate) against the ascarid Parascaris equorum in horse foals on eight farms in Central Kentucky (2009-2010).
Parasitology research    April 16, 2011   Volume 109, Issue 4 1193-1197 doi: 10.1007/s00436-011-2379-3
Lyons ET, Tolliver SC, Kuzmina TA, Collins SS.The activity of three anthelmintics (fenbendazole-FBZ; oxibendazole-OBZ; and pyrantel pamoate-PRT) was ascertained against the ascarid Parascaris equorum in horse foals on eight farms in Central Kentucky (2009-2010) in field tests. A total of 316 foals were treated, and 168 (53.2%) were passing ascarid eggs on the day of treatment. Evaluation of drug efficacy was determined qualitatively by comparing the number of foals passing ascarid eggs in their feces before and after treatment. The main purpose was to obtain data on current activity of these compounds against ascarids. Additionally, the o...
Fatal equine meningoencephalitis in the United Kingdom caused by the panagrolaimid nematode Halicephalobus gingivalis: case report and review of the literature.
Equine veterinary journal    March 4, 2011   Volume 43, Issue 6 759-763 doi: 10.1111/j.2042-3306.2010.00332.x
Hermosilla C, Coumbe KM, Habershon-Butcher J, Schöniger S.A fatal case of eosinophilic and granulomatous meningoencephalitis caused by the free-living panagrolaimid nematode Halicephalobus gingivalis is reported in a 10-year-old Welsh gelding in the United Kingdom. Clinical examination first revealed behavioural abnormalities which rapidly progressed to severe ataxia, reduced mentation status and cranial nerve signs. Despite symptomatic treatment no amelioration of neurological signs was achieved and the horse was subjected to euthanasia. A complete post mortem examination revealed eosinophilic and granulomatous meningoencephalitis mainly affecting t...
Ability of the fungus Duddingtonia flagrans to adapt to the cyathostomin egg-output by spreading chlamydospores.
Veterinary parasitology    February 25, 2011   Volume 179, Issue 1-3 277-282 doi: 10.1016/j.vetpar.2011.02.014
Paz-Silva A, Francisco I, Valero-Coss RO, Cortiñas FJ, Sánchez JA, Francisco R, Arias M, Suárez JL, López-Arellano ME, Sánchez-Andrade R....The analysis of the capability of the nematode trapping-fungus Duddingtonia flagrans to adapt to the cyathostomin egg-output in horses was evaluated. Fecal samples from 196 pasturing autochthonous Pura Raza Galega horses were collected from the rectum and then divided according to the egg-output into three groups: ≤ 300, 310-800 and >800 eggs per gram feces. Four doses of chlamydospores (0.1, 0.2, 0.4 and 0.8 × 10(6)/100g feces) were directly spread onto fecal pats on the ground, remaining one without treatment as control. Fecal pats confirmed the presence of gastrointestinal nematode la...
Prevalence of non-strongyle gastrointestinal parasites of horses in Riyadh region of Saudi Arabia.
Saudi journal of biological sciences    February 17, 2011   Volume 18, Issue 3 299-303 doi: 10.1016/j.sjbs.2011.02.001
Al Anazi AD, Alyousif MS.This study aimed to provide recent data on the occurrence of non-strongyle intestinal parasite infestation in horses in the Riyadh region of Saudi Arabia as a basis for developing parasite control strategies. We conducted necropsy for 45 horses from September 2006 to November 2007 in the Riyadh region, Saudi Arabia. 39 out of 45 horses were infected with intestinal parasites with an infestation rate of 86.6%. Infestations with seven nematode species and two species of Gasterophilus larva were found. The most prevalent parasites were Strongyloides westeri (64.4%) and Parascaris equorum (28.8%) ...
Three recently recognized species of cyathostomes (Nematoda: Strongylidae) in equids in Kentucky.
Parasitology research    November 24, 2010   Volume 108, Issue 5 1179-1184 doi: 10.1007/s00436-010-2160-z
Kuzmina TA, Tolliver SC, Lyons ET.Three species of cyathostomes--Cylicocyclus ashworthi, Cylicostephanus bidentatus, and Cylicostephanus hybridus were identified recently in horses in Kentucky. General characteristics and distinguishing description of these species are presented. Distribution of these species and their role in the horse strongylid community are discussed. The importance of examining the entire contents of the large intestine or alternatively a high number of specimens in order to recover and identify species residing in low numbers is stressed.
Morphology of the infective larval stage of the equid parasite Habronema muscae (Spirurida: Habronematidae), from houseflies (Musca domestica).
Parasitology research    October 15, 2010   Volume 108, Issue 3 629-632 doi: 10.1007/s00436-010-2106-5
Buzzell GR, Tariq S, Traversa D, Schuster R.The infective larva of the spirurid nematode Habronema muscae, a parasite of houseflies, was measured and specimens fixed in Karnovsky's fluid were examined by scanning electron microscopy. The oral opening contains six teeth and is surrounded by large bilobed dorsal and ventral lips and smaller lateral lips. A pair of amphids lie behind the lateral lips. There are two rows of four cephalic papillae. The body is deeply ridged, both transversely and longitudinally. The caudal end of the worm is studded by small papillae. The position of the anal opening is somewhat ambiguous. These larval morph...
Biological control of cyathostomin (Nematoda: Cyathostominae) with nematophagous fungus Monacrosporium thaumasium in tropical southeastern Brazil.
Veterinary parasitology    October 8, 2010   Volume 175, Issue 1-2 92-96 doi: 10.1016/j.vetpar.2010.09.035
Tavela Ade O, Araújo JV, Braga FR, Silva AR, Carvalho RO, Araujo JM, Ferreira SR, Carvalho GR.Horses are hosts to a wide variety of helminthes; the most important are the cyathostomin, or small strongyles. The viability of a fungal formulation (pellets) using the nematode-trapping fungus Monacrosporium thaumasium was assessed in biological control of horse cyathostomin. Two groups (fungus-treated and control) consisted of six mares in each group, crossbred (ages of 2.5 and 3.5 years), were placed in pastures of Cynodon sp. naturally infected with horse cyathostomin larvae. In the treated group, each animal received 1g/10 kg body weight (0.2g/10 kg live weight of fungus) of pellets of s...
Large intestinal mast cell count and proteinase expression is associated with larval burden in cyathostomin-infected horses.
Equine veterinary journal    September 16, 2010   Volume 42, Issue 7 652-657 doi: 10.1111/j.2042-3306.2010.00106.x
Pickles KJ, Mair JA, Lopez-Villalobos N, Shaw DJ, Scott I, Pomroy W.Cyathostomins are the principal pathogenic nematode of equidae worldwide. In other species mast cell (MC) proteinases, in particular chymases, appear to have protective roles. Knowledge of the equine intestinal immune response to cyathostomins is limited. Objective: To investigate MC numbers and proteinase expression in equine cyathostomin-infected large intestine. Objective: MC populations in the large intestine are positively associated with cyathostomin burden and predominantly express chymase. Methods: The caecal cyathostomin burden of naturally infected horses (n = 25) was determined by l...
Analysis of multiyear studies in horses in Kentucky to ascertain whether counts of eggs and larvae per gram of feces are reliable indicators of numbers of strongyles and ascarids present.
Veterinary parasitology    August 17, 2010   Volume 174, Issue 1-2 77-84 doi: 10.1016/j.vetpar.2010.08.007
Nielsen MK, Baptiste KE, Tolliver SC, Collins SS, Lyons ET.Increasing levels of anthelmintic resistance in equine nematodes have led to recommendations of more sustainable anthelmintic treatment protocols with emphasis on parasite surveillance and diagnosis, rather than prophylactic calendar-based treatments. This requires knowledge of the diagnostic test performance of techniques for counts of eggs per gram of feces (EPG) as well as methods for culturing, counting and identifying third stage (L(3)) strongyle larvae per gram of feces (LPG). For horses, such information does not exist in the published literature. The aim of this study was to examine th...
Morphology and diagnosis of the fourth-stage larva of Coronocyclus labratus (Looss, 1900) (Nematoda: Strongyloidea) parasitising equids.
Systematic parasitology    August 11, 2010   Volume 77, Issue 1 29-34 doi: 10.1007/s11230-010-9255-x
Kharchenko VA, Kuzmina TA.The fourth larval stage (L4) of Coronocyclus labratus (Looss, 1900) Hartwich, 1986, one of the common species of the Cyathostominae found in equids, is identified and described. The larvae found were identified as C. labratus by finding moulting forms possessing characters of both larval and adult stages. The larvae are similar to those of Cylicocyclus leptostomum (Kotlán, 1920) Foster, 1936, Cyathostomum catinatum Looss, 1900 and Cylicostephanus goldi (Boulenger, 1917) Lichtenfels, 1975. The buccal capsule (BC) wall of the L4 of Cylicocyclus leptostomum is thinner than that of Coronocyclus l...
Cutaneous and pulmonal habronemosis transmitted by Musca domestica in a stable in the United Arab Emirates.
Veterinary parasitology    August 6, 2010   Volume 174, Issue 1-2 170-174 doi: 10.1016/j.vetpar.2010.07.018
Schuster RK, Sivakumar S, Kinne J, Babiker H, Traversa D, Buzzell GR.Nematode larvae found in histological cuts of lung tissue of a horse from a farm in Al Dhaid (UAE) were determined to belong to the Habronematidae family. The clinical examination of the other 18 horses present in the farm revealed summer sores (cutaneous habronemosis) in two stallions. Nematode larvae were found in 147 (=26.2%) out of 561 male but only in 64 (=8.7%) out of 739 female Musca domestica caught at the farm in November and December 2008. Conversely, all 15 Stomoxys calcitrans specimens caught in the farm resulted negative for nematode larvae. The housefly population caught in the b...
Surgical extraction of an intraocular infection of Parelaphostrongylus tenuis in a horse.
Journal of the American Veterinary Medical Association    July 17, 2010   Volume 237, Issue 2 196-199 doi: 10.2460/javma.237.2.196
Reinstein SL, Lucio-Forster A, Bowman DD, Eberhard ML, Hoberg EP, Pot SA, Miller PE.A 4-year-old Hanoverian gelding was evaluated because of a mobile worm-like structure in the right eye. Results: Ophthalmologic examination of the right eye revealed a white, thin, coiled, mobile parasite, which was presumed to be a nematode, located in the ventral portion of the anterior chamber of the eye; there also were vitreal strands located temporally and inferiorly near the margin of the pupil. Results of ophthalmologic examination of the left eye were unremarkable. Results: The horse was treated with a neomycin-polymyxin B-dexamethasone ophthalmic solution applied topically (1 drop, q...
In vitro predatory activity of nematophagous fungi and after passing through gastrointestinal tract of equine on infective larvae of Strongyloides westeri.
Parasitology research    April 6, 2010   Volume 107, Issue 1 103-108 doi: 10.1007/s00436-010-1841-y
Araujo JM, Araújo JV, Braga FR, Carvalho RO.Three isolates of predator fungi Duddingtonia flagrans (AC001), Monacrosporium thaumasium (NF34), and Arthrobotrys robusta (I-31) were assessed in in vitro test regarding the capacity of prey infective larvae (L(3)) Strongyloides westeri. Compared to control, without fungus, there was a significant decrease (P 0.01) in vitro test. Linear regression coefficients of treated and control groups were -0.21 for control, -0.32 for D. flagrans, -0.34 for M. thaumasium, and -0.22 for A. robusta. In the following, isolates AC001 and NF34 were assessed in vivo regarding the capacity of supporting the pa...
Biodiversity and distribution of helminths and protozoa in naturally infected horses from the biosphere reserve La Sierra Madre de Chiapas”, México.
Veterinary parasitology    February 21, 2010   Volume 170, Issue 3-4 268-277 doi: 10.1016/j.vetpar.2010.02.016
Güiris AD, Rojas HN, Berovides AV, Sosa PJ, Pérez EM, Cruz AE, Chávez HC, Moguel AJ, Jimenez-Coello M, Ortega-Pacheco A.A cross sectional survey was performed to identify gastrointestinal helminths and protozoans in naturally infected horses from the biosphere reserve known as "La Sierra Madre de Chiapas", Mexico (El Triunfo and La Sepultura). During a three-year survey, fecal samples from 90 horses and parasites from 2 necropsied animals were collected. Five families from the Nematoda class: Ascaridae, Kathlanidae, Oxyuridae, Strongylidae and Trichostrongylidae were found, whereas, only one family from the class Cestoda, was observed: Anoplocephalidae. One family from the class Insecta, was observed: Gasteroph...
Endoparasite control management on horse farms–lessons from worm prevalence and questionnaire data.
Equine veterinary journal    February 4, 2010   Volume 42, Issue 1 79-83 doi: 10.2746/042516409X471485
Fritzen B, Rohn K, Schnieder T, von Samson-Himmelstjerna G.Increasing prevalence of anthelmintic resistance in equine nematodes calls for a reexamination of current parasite control programmes to identify factors influencing control efficacy and development of resistance. Objective: To investigate if associations occur between prevalence of parasitic nematodes and management practices. Methods: German horse farms (n = 76) were investigated in 2003 and 2004. Information on farm and pasture management with respect to endoparasite control measures obtained using a questionnaire survey. Faecal examinations were performed in parallel. Results: Horses (n = ...
[The case of the nematode Setaria equina found in the vaginal sac of the stallion’s scrotum].
Wiadomosci parazytologiczne    January 1, 2010   Volume 56, Issue 4 319-321 
Kornaś S, Pozor M, Okólski A, Nowosad B.The nematode Setaria equina usually reside in body cavities and do not cause clinical symptoms. From time to time, however, these parasites can be located in the scrotum and spermatic cord inflicting pain and edema in these body parts. The aim of the study was to describe the case of the nematode Setaria equina found in the vaginal sac of the stallion's scrotum. During the study, thorough examination of 50 isolated testicles of 25 stallions was conducted. The horses were obtained post-slaughter from the local slaughterhouse near Krakow. In one of examined stallions, two females of Setaria equi...
Parascaris and cyathostome nematodes in foals: parasite in transit or real infection?
Polish journal of veterinary sciences    January 1, 2010   Volume 13, Issue 4 713-717 doi: 10.2478/v10181-010-0010-7
Kornaś S, Cabaret J, Nowosad B.Faecal egg counts were performed in 187 foals of a large Polish stud farm between February and September 2007. Eggs of Parascaris equorum were present in faeces of 7% and those of cyathostomins in 13% of the foals aged less than 194 days. Information dealing with age of foals and/or efficiency of ivermectin treatment as well as the nematode parasite prepatent periods, it can be conducted that most of the infections recorded on the basis of faecal egg counts were false-infections in animals up to the age of six months, probably due to the ingestion of infected faeces of their dam or some other ...
Viability of the nematophagous fungus Pochonia chlamydosporia after passage through the gastrointestinal tract of horses.
Veterinary parasitology    December 2, 2009   Volume 168, Issue 3-4 264-268 doi: 10.1016/j.vetpar.2009.11.020
Braga FR, Araújo JV, Silva AR, Carvalho RO, Araujo JM, Ferreira SR, Carvalho GR.The predatory capacity of the nematophagous fungus Pochonia chlamydosporia (isolate VC4) embedded in sodium alginate pellets after passage through the gastrointestinal tract of horses was assessed in vitro against Oxyuris equi eggs. Twelve previously dewormed crossbred mares, average weight of 362.5kg (+/-21) were used in the experiment. Each animal of the treated group received an oral dose (100g) of sodium alginate pellets containing P. chlamydosporia mycelial mass. The control group received pellets without fungus. Faecal samples from fungus-treated and control groups were collected at inte...
Clinical trial of efficacy of ivermectin pour-on against gastrointestinal parasitic nematodes in silvopasturing horses.
Equine veterinary journal    November 26, 2009   Volume 41, Issue 7 713-715 doi: 10.2746/042516409x447275
Francisco I, Sánchez JA, Cortiñas FJ, Francisco R, Mochales E, Arias M, Mula P, Suárez JL, Morrondo P, Díez-Baños P, Sánchez-Andrade R....The aim of this study was to assess, by a clinical trial, the efficacy of an ivermectin-based pour-on treatment against gastrointestinal parasitic nematodes in naturally infected horses using 2 groups of mature indigenous Pura Raza Galega grazing mares. Faecal and blood samples were collected individually over a 21 week period. Faeces were analysed by the coprological flotation, sedimentation and migration techniques. Changes in circulating blood cells were monitored over the study period. The administration of the ivermectin suppressed the egg-elimination of ascarids and pinworms throughout t...
Distribution and species-specific occurrence of cyathostomins (Nematoda, Strongylida) in naturally infected horses from Italy, United Kingdom and Germany.
Veterinary parasitology    November 10, 2009   Volume 168, Issue 1-2 84-92 doi: 10.1016/j.vetpar.2009.10.006
Traversa D, Milillo P, Barnes H, von Samson-Himmelstjerna G, Schurmann S, Demeler J, Otranto D, Lia RP, Perrucci S, Frangipane di Regalbono A....A broad scale study was carried out in 2008 to evaluate the distribution and species-specific occurrence of cyathostomin populations in horse yards from Europe. In total 102 properties and 3123 horses were included in Italy (60 yards and 1646 animals), United Kingdom (22 yards and 737 animals) and Germany (20 yards and 740 animals). Individual faecal samples were examined with a McMaster technique while pooled samples were subjected to the microscopic examination of in vitro cultured larvae and to a Reverse Line Blot (RLB) assay able to molecularly identify the most diffused 13 species of cyat...
Determination of genomic DNA sequences for beta-tubulin isotype 1 from multiple species of cyathostomin and detection of resistance alleles in third-stage larvae from horses with naturally acquired infections.
Parasites & vectors    September 25, 2009   Volume 2 Suppl 2, Issue Suppl 2 S6 doi: 10.1186/1756-3305-2-S2-S6
Lake SL, Matthews JB, Kaplan RM, Hodgkinson JE.Genetic resistance against benzimidazole (BZ) anthelmintics is widespread in cyathostomins, the commonest group of intestinal parasitic nematodes of horses. Studies of BZ-resistant nematodes of sheep, particularly Haemonchus contortus, have indicated that an anthelmintic resistance-conferring T/A polymorphism, encoding an F (phenylalanine) to Y (tyrosine) substitution, in beta-tubulin isotype 1 is present at two loci, codons 167 and 200 (F167Y, F200Y). Recent studies using complementary (c) DNA derived from BZ-susceptible and -resistant cyathostomins identified statistical differences in the f...
Moxidectin: a review of chemistry, pharmacokinetics and use in horses.
Parasites & vectors    September 25, 2009   Volume 2 Suppl 2, Issue Suppl 2 S5 doi: 10.1186/1756-3305-2-S2-S5
Cobb R, Boeckh A.This article reviews the current knowledge of the use of moxidectin (MOX) in horses, including its mode of action, pharmacokinetic and pharmacodynamic properties, efficacy, safety and resistance profile.Moxidectin is a second generation macrocyclic lactone (ML) with potent endectocide activity. It is used for parasite control in horses in an oral gel formulation. The principal mode of action of MOX and of other MLs is binding to gamma-aminobutyric (GABA) and glutamate-gated chloride channels. Moxidectin is different from other MLs in that it is a poor substrate for P-glycoproteins (P-gps) and ...
Identification and characterisation of an immunodiagnostic marker for cyathostomin developing stage larvae.
International journal for parasitology    August 22, 2009   Volume 40, Issue 3 265-275 doi: 10.1016/j.ijpara.2009.08.004
McWilliam HE, Nisbet AJ, Dowdall SM, Hodgkinson JE, Matthews JB.Parasitic nematodes of the group Cyathostominae are an important cause of disease in horses. This group consists of approximately 50 species, all of which have similar life cycles that involve encystment of larval stages in the large intestinal wall. Encysted larvae can persist for months to years and, occasionally, large numbers can accumulate and emerge synchronously to cause severe pathology, resulting in diarrhoea, weight loss, colic and/or oedema. This syndrome, known as larval cyathostominosis, can be fatal in up to 50% of cases, despite treatment. There is no diagnostic method that enab...
Mechanical recovery of inhibited cyathostomin larvae from equine intestinal tissue.
Parasitology research    May 29, 2009   Volume 105, Issue 2 587-589 doi: 10.1007/s00436-009-1473-2
Glover ID, Henry GM, Townsend NB, Coles GC.The Stomacher is very widely used in food and medical research for extracting tissues. To determine whether nematode larvae were disrupted by the Stomacher, L3 larvae of Haemonchus contortus were homogenised for up to 40 min at full power but no larval disruption occurred. Therefore, tissue from the mucosa and submucosa of the caecum of horses collected from a licenced abattoir was treated to determine whether inhibited cyathostomin larvae could be extracted. The optimum time on full power for a 10-g sample was 20 min, and in three out of five caecal samples from different horses, significantl...
Biological control of horse cyathostomin (Nematoda: Cyathostominae) using the nematophagous fungus Duddingtonia flagrans in tropical southeastern Brazil.
Veterinary parasitology    May 15, 2009   Volume 163, Issue 4 335-340 doi: 10.1016/j.vetpar.2009.05.003
Braga FR, Araújo JV, Silva AR, Araujo JM, Carvalho RO, Tavela AO, Campos AK, Carvalho GR.The viability of a fungal formulation using the nematode-trapping fungus Duddingtonia flagrans was assessed for the biological control of horse cyathostomin. Two groups (fungus-treated and control without fungus treatment), consisting of eight crossbred mares (3-18 years of age) were fed on Cynodon sp. pasture naturally infected with equine cyathostome larvae. Each animal of the treated group received oral doses of sodium alginate mycelial pellets (1g/(10 kg live weight week)), during 6 months. Significant reduction (p<0.01) in the number of eggs per gram of feces and coprocultures was foun...
In vitro development of cyathostomin larvae from the third stage larvae to the fourth stage: morphologic characterization, effects of refrigeration, and species-specific patterns.
Veterinary parasitology    May 4, 2009   Volume 163, Issue 4 348-356 doi: 10.1016/j.vetpar.2009.04.029
Brianti E, Giannetto S, Traversa D, Chirgwin SR, Shakya K, Klei TR.A mixed population of equine cyathostomin (Nematoda, Strongyloidea) infective third stage larvae (L3) was cultured in vitro using a cell-free medium. Some L3 were cultured immediately after Baermann collection from fecal cultures, while others were kept in water at 4 degrees C for 7 days before initiating the in vitro cultures. Cultures were examined daily for viability. At days 2, 7, 14 and 21 larvae were collected for identification of developmental stage and morphological changes, using both light and scanning electron microscopy. Larvae were classified as early L3 (EL3), developing L3 (DL3...
Morphometric identification of equid cyathostome (Nematoda: Cyathostominae) infective larvae.
Veterinary parasitology    March 17, 2009   Volume 162, Issue 3-4 290-294 doi: 10.1016/j.vetpar.2009.03.018
Kornaś S, Gawor J, Cabaret J, Molenda K, Skalska M, Nowosad B.The prevalence of infection with cyathosthomes of horses is high worldwide. Identification of species on infective larvae based on available morphological keys is not fully accurate and the aim of the present study was to provide a reliable identification key of cyathostomes infective larvae. At the abattoir, horse large intestines were examined and the cyathostomes females extracted and identified. The eggs from uteruses of identified cyathostomes females were used for breeding the infective larvae. Morphological parameters of Cyathostominae infective larvae, i.e. the length of the larvae wit...
The little-known scenario of anthelmintic resistance in equine cyathostomes in Italy.
Annals of the New York Academy of Sciences    January 6, 2009   Volume 1149 167-169 doi: 10.1196/annals.1428.078
Traversa D.Cyathostomes (Nematoda, Cyathostominae) cause colic, decreased performance and growth, peripheral edema, and dysorexia in equids. Also, the synchronous emergence of cyathostome larvae encysted in the colon and cecal wall causes larval cyathostominosis, which is characterized by protein-depriving enteropathy, chronic diarrhea, edema, weight loss, colitis, and may be fatal. In the past few decades, drug resistance in cyathostomes has become widespread, especially for benzimidazoles. Resistance to tetrahydropyrimidines is still confined to a few areas, and the recent reports of reduced efficacy i...
1 … 8 9 10 11 12 … 18