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Topic:Equine Science

Equine Science encompasses the study of horses and their management, health, and performance. This field integrates various scientific disciplines such as biology, genetics, nutrition, physiology, and veterinary medicine to understand and improve the well-being and capabilities of horses. Areas of focus include equine anatomy, reproduction, behavior, and disease prevention. Research in equine science aims to enhance horse care, optimize training and performance, and address health challenges. This page compiles peer-reviewed research studies and scholarly articles that explore the diverse aspects of equine science, providing insights into the latest advancements and methodologies in the field.
DNA sequences from the quagga, an extinct member of the horse family.
Nature    November 15, 1984   Volume 312, Issue 5991 282-284 doi: 10.1038/312282a0
Higuchi R, Bowman B, Freiberger M, Ryder OA, Wilson AC.To determine whether DNA survives and can be recovered from the remains of extinct creatures, we have examined dried muscle from a museum specimen of the quagga, a zebra-like species (Equus quagga) that became extinct in 1883 (ref. 1). We report that DNA was extracted from this tissue in amounts approaching 1% of that expected from fresh muscle, and that the DNA was of relatively low molecular weight. Among the many clones obtained from the quagga DNA, two containing pieces of mitochondrial DNA (mtDNA) were sequenced. These sequences, comprising 229 nucleotide pairs, differ by 12 base substitu...
Drug prescription and equine events.
The Veterinary record    November 3, 1984   Volume 115, Issue 18 452 doi: 10.1136/vr.115.18.452
Vogel C.No abstract available
Standardised terminology for the description and analysis of equine locomotion.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 522-528 doi: 10.1111/j.2042-3306.1984.tb02007.x
Leach DH, Ormrod K, Clayton HM.Terminology for the analysis of equine locomotion is reviewed and the most appropriate terms selected for use by research workers in this field. Each cycle of limb movement comprises a stance phase, when the hoof is in contact with the ground, alternating with a swing phase. The stance phase is subdivided at the mid-stance position into an initial decelerative phase followed by a propulsive phase. When the stance phases of different limbs occur concurrently, the term overlap refers to the duration of simultaneous ground contact. Single support is the term used to describe the phase when the li...
Immunotherapy of periocular sarcoids in horses.
The Veterinary clinics of North America. Large animal practice    November 1, 1984   Volume 6, Issue 3 513-518 doi: 10.1016/s0196-9846(17)30007-1
Lavach JD, Severin GA, Lueker D.No abstract available
Importance of uniform cuff application for equine blood pressure measurement.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 529-531 doi: 10.1111/j.2042-3306.1984.tb02009.x
Parry BW, Anderson GA.Seventeen horses were used to determine the variances associated with blood pressure cuff application (Sp2) and with other inherent errors (So2). Systolic pressure values had Sp2 = 3.9 mmHg and So2 = 5.6 mmHg, while diastolic pressure values had Sp2 = 1.1 mmHg and So2 = 4.4 mmHg. Thus, to be considered different, two blood pressure means (in mmHg), each derived from three readings, had to differ by at least 3.9 for systolic pressure and 3.4 for diastolic pressure when all readings were made without cuff displacement; 6.8 for systolic pressure and 4.6 for diastolic pressure when the cuff was re...
Equine ocular cosmesis.
The Veterinary clinics of North America. Large animal practice    November 1, 1984   Volume 6, Issue 3 489-499 doi: 10.1016/s0196-9846(17)30005-8
Lavach JD, Severin GA.No abstract available
Use of bone cement in two equine orthopaedic cases.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 543-545 doi: 10.1111/j.2042-3306.1984.tb02015.x
Hickman J, Kold SE, Ellis DR, Greenwood RE.No abstract available
The amino acid sequence of equine alpha-lactalbumin.
Biochemistry international    November 1, 1984   Volume 9, Issue 5 539-546 
Kaminogawa S, McKenzie HA, Shaw DC.The amino acid sequence of equine alpha-lactalbumin has been determined with the aid of an automatic sequencer. The protein chain consists of 123 amino acids and has a Mr of 14218. Elucidation of the structure involved sequence determination of native protein (residues 1-32), cyanogen bromide fragments, and tryptic, chymotryptic and S. aureus V8 proteolytic peptides. Approximately 67% of the residues are identical with corresponding residues of bovine alpha-lactalbumin B, and there is close homology with alpha-lactalbumin of other species.
Interpreting radiographs 5: radiology of the equine hock.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 488-495 doi: 10.1111/j.2042-3306.1984.tb01996.x
Shelley J, Dyson S.No abstract available
Serial investigations of early pregnancy in pony mares using real time ultrasound scanning.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 509-514 doi: 10.1111/j.2042-3306.1984.tb02002.x
Allen WE, Goddard PJ.The uteri of 13 pony mares were examined daily by ultrasound during the first two months of gestation. The conceptus was first identified between 12 and 16 days after ovulation and the embryo was seen on the ventral surface of the conceptus after Day 21. The foetal heart could be visualised after Day 22 and spontaneous movement of the foetus occurred after Day 39. No consistent pattern was seen in the development of the foetal membranes, although attachment of the umbilical cord to the allantochorion was always on the dorsal aspect of the conceptus. Daily measurements were made of the diameter...
Symposium on large animal ophthalmology.
The Veterinary clinics of North America. Large animal practice    November 1, 1984   Volume 6, Issue 3 433-676 
No abstract available
Invasive trophoblast in the genus Equus.
Annales d'immunologie    November 1, 1984   Volume 135D, Issue 3 325-331 doi: 10.1016/s0769-2625(84)81201-5
Antczak DF, Allen WR.No abstract available
Current concepts in equine ocular therapeutics.
The Veterinary clinics of North America. Large animal practice    November 1, 1984   Volume 6, Issue 3 435-449 doi: 10.1016/s0196-9846(17)30002-2
Lavach JD, Roberts SM, Severin GA.No abstract available
Equine cutis hyperelastica.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 541-542 doi: 10.1111/j.2042-3306.1984.tb02014.x
Solomons B.No abstract available
Is your progesterone therapy really necessary?
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 496-498 doi: 10.1111/j.2042-3306.1984.tb01998.x
Allen WR.No abstract available
Equine whole saliva: a sample collection system and biochemical analysis.
The Veterinary record    October 27, 1984   Volume 115, Issue 17 437-438 doi: 10.1136/vr.115.17.437
Eckersall PD.No abstract available
Reaction to equine sarcoid therapy.
Journal of the American Veterinary Medical Association    October 15, 1984   Volume 185, Issue 8 839 
Landsheft WB, Anderson GF.No abstract available
Mare lactotransferrin: purification, analysis and N-terminal sequence determination.
FEBS letters    October 15, 1984   Volume 176, Issue 1 185-188 doi: 10.1016/0014-5793(84)80937-0
Jollès J, Donda A, Amiguet P, Jollès P.Mare lactotransferrin has been purified and analyzed. Its molecular mass is 81 kDa. A 28 amino acid long N-terminal sequence was established and a first series of comparisons with other transferrins was performed.
Castration of horses and donkeys with first intention healing.
The Veterinary record    October 13, 1984   Volume 115, Issue 15 372-375 doi: 10.1136/vr.115.15.372
Cox JE.A simple technique for castration of adult horses which results in first intention healing was devised. The technique involves a 'closed' castration with or without a transfixed ligature on the spermatic sac and suturing the scrotal skin with polyglycolic acid suture material. The postoperative course was characterised by mild oedema only and by rapid recovery. The results obtained during the course of removing 311 scrotal testes from horses and donkeys of all ages are described and discussed. The technique is readily applicable in the field.
[Keratinizing squamous cell carcinoma in the stomach of a horse].
DTW. Deutsche tierarztliche Wochenschrift    October 8, 1984   Volume 91, Issue 10 374-375 
Schoon A, Richter J, Deegen E.No abstract available
[Cardiovascular study of the horse: relation between vascular and tissue changes in the myocardium. 2].
Schweizer Archiv fur Tierheilkunde    October 1, 1984   Volume 126, Issue 10 527-538 
Dudan F, Rossi GL, Luginbühl H.No abstract available
Equine plasma banking: collection by exsanguination.
Journal of the American Veterinary Medical Association    October 1, 1984   Volume 185, Issue 7 772-774 
Eicker SW, Ainsworth DM.A procedure was developed for the collection, preparation, storage, and administration of equine plasma. The technique involved exsanguination of anesthetized donor horses via carotid artery catheterization with a large-bore cannula. Blood was collected into plastic bags, allowed to settle by gravity, then transferred into storage bags and frozen. These were quickly thawed when needed.
A follicular adenoma with C-cell hyperplasia in the equine thyroid.
Nihon juigaku zasshi. The Japanese journal of veterinary science    October 1, 1984   Volume 46, Issue 5 615-623 doi: 10.1292/jvms1939.46.615
Yoshikawa T, Yoshikawa H, Oyamada T, Suzuki K.No abstract available
[The biology of Eimeria leuckarti (Flesch, 1883) in Equidae].
Berliner und Munchener tierarztliche Wochenschrift    October 1, 1984   Volume 97, Issue 10 367-372 
Bauer C, Bürger HJ.No abstract available
Usefulness of lymphocyte typing to exclude incorrectly assigned paternity in horses.
American journal of veterinary research    October 1, 1984   Volume 45, Issue 10 1976-1978 
Bailey E.Lymphocyte typing can be used to detect incorrectly identified parentage of horses. Efficacies of lymphocyte typing to solve paternity questions were calculated using gene frequency estimates of equine lymphocyte antigen (ELA) markers for Thoroughbreds and Standardbreds. Probabilities that ELA typing will detect an incorrectly assigned sire were 68.7% in Thoroughbreds, 67.9% in pacing Standardbreds, and 62.0% in trotting Standardbreds. These calculations demonstrate that ELA typing is among the most efficacious genetic systems for solving paternity questions in horses. Likewise, it could also ...
Renal papillary necrosis in equines.
Bulletin of environmental contamination and toxicology    October 1, 1984   Volume 33, Issue 4 379-381 doi: 10.1007/BF01625558
Faulkner LW, Erb HN, King JM.No abstract available
Serum testosterone levels in young normal horses.
Theriogenology    October 1, 1984   Volume 22, Issue 4 417-421 doi: 10.1016/0093-691x(84)90462-x
Hamilton MJ, Hughes IM, Hegreberg GA.Serum testosterone levels were measured in normal young male horses (29 to 34 weeks old). No differences were found between gelded and intact males. The values for all the horses were low. On the basis of their testosterone levels, all the horses were prepubertal.
Graduate education for emergency medicine: the choice of yaks and horses or mules and zoes.
Annals of emergency medicine    October 1, 1984   Volume 13, Issue 10 967-971 doi: 10.1016/s0196-0644(84)80677-0
Wagner DK.No abstract available
Techniques and applications of transabdominal ultrasonography in the pregnant mare.
Journal of the American Veterinary Medical Association    October 1, 1984   Volume 185, Issue 7 766-771 
Pipers FS, Adams-Brendemuehl CS.To establish the feasibility of utilizing high-frequency ultrasound to image equine fetal development transabdominally, in vitro and in vivo observations were made. Three fetuses retrieved from mares that died from various causes were scanned in vitro to establish fetal images from various orientations. A total of 50 mares ranging in age from 4 to 16 years and representing various breeds were scanned intermittently from 100 days of gestation to parturition. Fetal parts, amniotic fluid, placental membranes, and motion patterns could be reliably identified. Fetal heart rates decreased from 180 b...
Growth kinetics of equine respiratory tract viruses in cell and organ cultures.
American journal of veterinary research    October 1, 1984   Volume 45, Issue 10 1961-1966 
O'Niell FD, Issel CJ.Growth kinetics of equine influenza virus-A1, equine herpesvirus-1, and equine rhinovirus-1 were determined in susceptible cell monolayers and in organ cultures of equine fetal tracheal and nasal turbinate epithelium. Equine influenza virus-A1 was replicated in cell and organ cultures and was released more readily and for longer periods from nasal turbinate epithelium than from tracheal epithelium. Equine herpesvirus-1 was also replicated in cell and organ cultures. During the first 24 hours after inoculation, equine herpesvirus-1 was released more readily from tracheal epithelium than from na...