Analyze Diet

Topic:Pasture

Pasture and horses involve the study and management of grazing environments and their impact on equine health, nutrition, and behavior. Pastures serve as a primary source of forage, providing essential nutrients and contributing to the overall well-being of horses. Factors such as pasture composition, quality, and management practices influence the nutritional intake and health of grazing horses. Research in this area often focuses on optimizing pasture conditions to support equine dietary needs, prevent overgrazing, and manage pasture-related health issues such as laminitis. This page compiles peer-reviewed research studies and scholarly articles that explore the relationship between pasture management and equine health, including topics on forage quality, grazing behavior, and pasture maintenance strategies.
Epidemiology and control of equine strongylosis at Newmarket.
Equine veterinary journal    November 1, 1986   Volume 18, Issue 6 447-452 doi: 10.1111/j.2042-3306.1986.tb03684.x
Herd RP.Seasonal rises in mean faecal egg output were observed in grazing ponies in spring (578 eggs per gram) and in summer (930 epg) on 30 April and 2 September, respectively, in untreated ponies. Pasture infectivity reached a peak of 18,486 third stage larvae (L3)/kg on 17 September, two weeks after peak egg counts, coincidental with abundant September rainfall (103.0 mm). Differentiation of infective larvae from pasture showed the cyathostomes (small strongyles) to be predominant, but Trichostrongylus axei assumed major importance from late August to October. The large strongyles were rarely detec...
Comparison of two control systems for cyathostome infections in the horse and further aspects of the epidemiology of these infections.
Veterinary parasitology    November 1, 1986   Volume 22, Issue 1-2 105-112 doi: 10.1016/0304-4017(86)90012-9
Eysker M, Jansen J, Kooyman FN, Mirck MH, Wensing T.The small strongylid infections of two groups of three yearling female Shetland ponies and one yearling Shetland tracer pony were studied. One group was set stocked from April to November and was treated monthly with 5 mg kg-1 albendazole from two days before turnout until July. The other group grazed similar pasture until July, was treated with 5 mg kg-1 albendazole and subsequently removed to pasture grazed by sheep from April to July. The tracer ponies were added to both groups in September. The efficacy of both methods was not completely satisfactory probably because of low efficacy of ant...
Haemolytic crisis associated with ragwort poisoning and rail chewing in two thoroughbred fillies.
New Zealand veterinary journal    September 1, 1985   Volume 33, Issue 9 159-160 doi: 10.1080/00480169.1985.35213
Dewes HF, Lowe MD.Events leading to the deaths of two fillies at pasture are described. Pasture hay containing the flowering stages of Senecio jacobea (ragwort) had been fed three to four months earlier. Paddocks were subdivided with posts and rails treated with copper chrome arsenate. Six horses on the property chewed rails spasmodically. Both fillies presented with haemoglobinurea. Values in liver of 83 mg Cu kg and kidney 35 mg Cu kg wet weight and serum 1.4 mg Cu/l together with histophathology of seneciosis support a sequence of ragwort poisoning followed by copper accumulation in liver and kidney terminat...
Seasonal changes in pasture infectivity by equine cyathostomes in north central Florida.
Equine veterinary journal    May 1, 1985   Volume 17, Issue 3 240-242 doi: 10.1111/j.2042-3306.1985.tb02483.x
Courtney CH, Asquith RL.ALTHOUGH the seasonal transmission of equine cyathostomes is well documented in cool climates (Ogbourne 1978), less is known about their transmission in warm climates. Australian studies have suggested that these parasites do not survive well during the long, hot summers of the humid subtropics (English 1979a.b). Development of egg to third stage larva (L3) was rapid during the summer but the percentage of larvae that survived to ascend herbage was very low. In contrast, larvae survived for longer periods during the cooler months and the highest L3 populations were observed during spr...
Integrated control of Strongylus vulgaris infection in horses using ivermectin.
Equine veterinary journal    May 1, 1985   Volume 17, Issue 3 191-195 doi: 10.1111/j.2042-3306.1985.tb02466.x
Dunsmore JD.An attempt was made to control or eliminate Strongylus vulgaris from a closed group of three horses at pasture near Perth, Western Australia, by dosing with ivermectin on four occasions during the time of year when it was believed that environmental conditions would eliminate all the non-parasitic stages of that species. At necropsy, five months after the last dose of anthelmintic and after continually grazing the same pastures, no S vulgaris or arterial lesions were found in those horses and S edentatus, Draschia megastoma and Habronema species were also almost completely eliminated.
Feeding and drinking behavior of mares and foals with free access to pasture and water.
Journal of animal science    April 1, 1985   Volume 60, Issue 4 883-889 doi: 10.2527/jas1985.604883x
Crowell-Davis SL, Houpt KA, Carnevale J.The feeding and drinking behavior of 11 mares and 15 foals living on pasture with free access to water was recorded during 2,340 15-min focal samples taken over 2 yr. Lactating mares on pasture spent about 70% of the day feeding. Foals began feeding on their first day of life. As they grew older, they spent progressively more time feeding, but still spent only 47 +/- 6% of the time feeding by 21 wk of age. Foals fed primarily during the early morning and evening. While grass formed the major proportion of the diet of both foals and mares, they also ate clay, humus, feces, bark, leaves and twig...
Uraemia in the mare: effects of seasonal variations, of energy level of the diet and individual differences.
Annales de recherches veterinaires. Annals of veterinary research    January 1, 1985   Volume 16, Issue 1 87-91 
Doreau M, Martin-Rosset W.Uraemia variations in the heavy breed mare were studied in different situations. A study with 35 mares during an entire grazing season was conducted. The mean uraemia varied between 48.5 and 67.5 mg/100 ml plasma, with season and type of grass. The highest values were found with first-cycle pasture grass. Uraemia was lower with winter diets: 28.6 to 36.0 mg/100 ml. A study using 15 mares fed isonitrogenous diets based on hay or straw, and concentrates offered two different levels, between two months before and 8 days after foaling, showed that the physiological stage had a very moderate effect...
Activity of closantel in the prevention of Gasterophilus and Strongylus vulgaris larval infections in equine foals and yearlings.
American journal of veterinary research    January 1, 1985   Volume 46, Issue 1 16-18 
Guerrero J, Newcomb K, Seibert BP, Michael BF.Two controlled tests were conducted in equine foals and yearlings to determine the optimal oral dosage and the duration of activity of closantel for the prevention of Gasterophilus spp larval infections. Additional data were collected on the activity of closantel against Strongylus vulgaris larval infections. In experiment 1, 12 foals and 12 yearlings were equally allocated to 4 experimental groups, and were given oral treatments with closantel at dosages of 0 (nontreated controls), 2, 5, or 8 mg/kg of body weight every 2 months during bot season. The foals and yearlings were allowed to graze ...
Vertical migration of infective larvae of equine strongyles in sandy clay loam.
American journal of veterinary research    March 1, 1984   Volume 45, Issue 3 575-577 
Houston RS, Fincher GT, Craig TM.The migration of infective strongyle larvae through sandy clay loam soil was determined by evaluating the burial of horse dung as a method of reducing parasitism in horses. Equine feces containing 325 strongyle eggs/g of feces were buried at depths of 2.5, 5.0, 7.5, 10.0, 12.5, 15.0, 20.0, and 30.0 cm below the pasture surface in sandy clay loam soil. Herbage samples were taken periodically from above the buried feces and were analyzed to determine the maximum vertical migration of infective larvae. The greatest distance of migration was 20 cm which occurred 31 days after the feces were buried...
Transmission of equine cyathostomes (Strongylidae) in central Texas.
American journal of veterinary research    October 1, 1983   Volume 44, Issue 10 1867-1869 
Craig TM, Bowen JM, Ludwig KG.After foaling, 6 mares and their foals were placed on equine parasite-free pastures. Observations of fecal nematode eggs and pasture larvae indicated peak cyathostome egg production occurred in late August and early September, with greatest numbers of larvae on the forage appearing during October. Two foals were necropsied for parasitologic evaluations at approximately 155 days of age. Both had approximately 100,000 adult cyathostomes, mostly Cylicostephanus longibursatus, Cylicocyclus nassatus and Cyathostomum catinatum. However, there were nearly 7 times more cyathostome larvae (189,004) in ...
Haematology of pastured horses in tropical Queensland.
Australian veterinary journal    January 1, 1983   Volume 60, Issue 1 31-32 doi: 10.1111/j.1751-0813.1983.tb02809.x
Miller RI, Campbell RS.No abstract available
Effect of diet on the oral glucose tolerance test in the horse.
Journal of the American Veterinary Medical Association    April 15, 1982   Volume 180, Issue 8 884-886 
Jacobs KA, Bolton JR.The effect of altering the diet during the week preceding the administration of an oral glucose tolerance test was studied in 7 horses. The results indicated that substantially lower oral glucose tolerance test curves are observed in horses fed a stable diet comprised of oat hay, a commercially prepared complete feed, and oat and alfalfa chaff, when compared with the curves for horses grazing clover and kikuyu pasture. It was concluded that, in utilizing the oral glucose tolerance test to assess small intestinal function in the horse, it may be necessary to consider the dietary history.
Control of nutritional secondary hyperparathyroidism in grazing horses with calcium plus phosphorus supplementation.
Australian veterinary journal    December 1, 1981   Volume 57, Issue 12 554-557 doi: 10.1111/j.1751-0813.1981.tb00433.x
McKenzie RA, Gartner RJ, Blaney BJ, Glanville RJ.A supplement system for the control of equine nutritional secondary hyperparathyroidism (NSH) was evaluated on 4 farms in the Arcadia Valley of the Queensland brigalow region. Thirty-three local stock horses (of which 13 had clinical NSH and 7 were recent introductions) were grazed on buffel grass (Cenchrus ciliaris) for the 6 months from September 1979 to February 1980. Each horse was fed 1.0 kg of a mixture of ground limestone plus dicalcium phosphate (1:2) in 1.5 kg molasses each week. The pasture was hazardous during this time (total oxalate content above 0.5% and calcium: oxalate ratio be...
[Migratory behavior and occurrence of equine strongylid larvae and their importance in pasture management].
Berliner und Munchener tierarztliche Wochenschrift    September 1, 1981   Volume 94, Issue 17 329-333 
Hasslinger MA.No abstract available
Clinical and structural features of equine enteroliths.
Journal of the American Veterinary Medical Association    July 1, 1981   Volume 179, Issue 1 79-82 
Blue MG, Wittkopp RW.Enteroliths were obtained by laparotomy or necropsy of 11 horses, and a collection of smaller concretions was found on pasture. Following analysis by energy-dispersion x-ray analysis and x-ray diffraction, they were found to consist primarily of ammonium magnesium phosphate. Several minor elements were detected, including titanium in some concretions. From a farm with a history of enterolith obstructions, the well water contained a high proportion of magnesium in relation to the other cations.
Feed supplements for horses.
Modern veterinary practice    June 1, 1980   Volume 61, Issue 6 555-556 
No abstract available
[Importance of fodder and feeding technic in colic of the horse].
Tierarztliche Praxis    January 1, 1979   Volume 7, Issue 2 221-227 
Meyer H.No abstract available
[Effect of pasturing and deworming on gastrointestinal parasite invasion in the horse. I. A comparative study in 2 stables with differing husbandry methods].
Schweizer Archiv fur Tierheilkunde    August 1, 1976   Volume 118, Issue 8 341-345 
Rizzoli-Stalder C, Pauli B, Leuenberger H, Hörning B.No abstract available
Osteodystrophia fibrosa in horses at pasture in Queensland: field and laboratory observations.
Australian veterinary journal    January 1, 1976   Volume 52, Issue 1 11-16 doi: 10.1111/j.1751-0813.1976.tb05362.x
Walthall JC, McKenzie RA.Horses grazing manily Cenchrus ciliaris and/or Panicum maximum var. trichoglume pastures on over 30 properties in southern central Queensland developed lesions of osteodystrophia fibrosa. Horses on individual properties in coastal Queensland grazing Setaria anceps, Brachiaria mutica or Pennisetum clandestinum also developed the disease. Ill-thrift, lameness, and fibrous swellings of nasal bones, maxillae and mandibles were observed. Calcium and phosphorus levels of pasture were normal but all the above pasture species contained oxalates which were suspected of causing the disease.
Letter: Grazing horses on dressed pasture.
The Veterinary record    June 8, 1974   Volume 94, Issue 23 556 doi: 10.1136/vr.94.23.556
Harvey TR.No abstract available
Survival on herbage plots of infective larvae of strongylid nematodes of the horse.
Journal of helminthology    January 1, 1973   Volume 47, Issue 1 9-16 doi: 10.1017/s0022149x00023695
Ogbourne CP.No abstract available
Variations in potash levels in pastures grazed by horses: a preliminary communication.
Equine veterinary journal    January 1, 1973   Volume 5, Issue 1 45-46 doi: 10.1111/j.2042-3306.1973.tb03192.x
Archer M.No abstract available
Preliminary studies on the palatability of grasses, legumes and herbs to horses.
The Veterinary record    August 28, 1971   Volume 89, Issue 9 236-240 doi: 10.1136/vr.89.9.236
Archer M.No abstract available
Partitioning the nutrients of forage for horses.
Journal of animal science    May 1, 1969   Volume 28, Issue 5 624-633 doi: 10.2527/jas1969.285624x
Fonnesbeck PV.No abstract available
Feeding of thoroughbred horses.
Australian veterinary journal    May 1, 1968   Volume 44, Issue 5 241-245 doi: 10.1111/j.1751-0813.1968.tb09093.x
Bourke JM.No abstract available
Rate of passage of various feedstuffs through the digestive tract of horses.
Journal of animal science    November 1, 1967   Volume 26, Issue 6 1309-1311 doi: 10.2527/jas1967.2661309x
Vander Noot GW, Symons LD, Lydman RK, Fonnesbeck PV.No abstract available
Digestibility of the proximate nutrients of forage by horses.
Journal of animal science    September 1, 1967   Volume 26, Issue 5 1039-1045 doi: 10.2527/jas1967.2651039x
Fonnesbeck PV, Lydman RK, Vander Noot GW, Symons LD.No abstract available
Feeding the Horse.
Veterinary medicine, small animal clinician : VM, SAC    June 1, 1965   Volume 60 616-625 
LLOYD WE.No abstract available
Component acids of mare’s milk fat.
Acta veterinaria Scandinavica    January 1, 1965   Volume 6, Issue 4 313-317 doi: 10.1186/BF03547088
Tanhuanpää E, Knudsen O.The milk fat from 20 mares on pasture and 9 stable-fed mares was analysed. It is richer in C18:3 than the milk of other domestic species. This was especially marked when the mares were on pasture and were not given any grain. Further, mare’s milk fat is rich in fatty acids containing less than 14 carbon atoms in their chains. Das Milchfett von 20 Stuten auf der Weide und von 9 stallgefütterten Stuten wurde analysiert. Es enthält mehr C18:3 als das Milchfett anderer Haustiere. Dieses war speziell ausgeprägt für Stuten die auf der Weide gingen und kein Getreide bekamen. Das Milchfett der S...
Stomatitis of cattle and horses due to yellow bristle grass (Setaria lutescens).
Journal of the American Veterinary Medical Association    August 15, 1956   Volume 129, Issue 4 149-152 
BANKOWSKI RA, WICHMANN RW, STUART EE.No abstract available