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Topic:Feral Horses

Feral horses, also known as free-roaming or wild horses, are equines that live in natural environments without direct human management. They are descendants of domesticated horses that have adapted to living in the wild over generations. These populations are found in various regions worldwide and exhibit behaviors and social structures distinct from domesticated horses. In contrast, domesticated horses are bred and raised under human care, often for specific purposes such as work, recreation, or sport. The study of feral horses involves understanding their ecology, behavior, and genetics, while research on domesticated horses often focuses on health, management, and performance. This page compiles peer-reviewed research studies and scholarly articles that explore the differences and similarities between feral and domesticated horses, including their behavior, physiology, and impact on ecosystems.
Causes of natal dispersal and emigration and their effects on harem formation in Misaki feral horses.
Equine veterinary journal    July 1, 1997   Volume 29, Issue 4 262-266 doi: 10.1111/j.2042-3306.1997.tb03121.x
Kaseda Y, Ogawa H, Khalil AM.Misaki feral horses were separated into 2 herds and the difference between dispersal from natal group (natal dispersal) and dispersal from natal area (natal emigration) was studied. The causes of dispersal and emigration and their effects on harem formation were studied 1979-1994. The number of horses ranged from 73 (mature males: 8, mature females: 26, young males: 8, young females: 3, colt foals: 6, filly foals: 10 and geldings: 12) in 1979 and 86 (mature males: 14, mature females: 37, young males: 12, young females: 7, colt foals: 5, filly foals: 7 and geldings: 4) in 1994 when the present ...
Case studies in wildlife immunocontraception: wild and feral equids and white-tailed deer.
Reproduction, fertility, and development    January 1, 1997   Volume 9, Issue 1 105-110 doi: 10.1071/r96052
Kirkpatrick JF, Turner JW, Liu IK, Fayrer-Hosken R, Rutberg AT.Non-lethal management methods are required for wild equids that are protected by law and for deer inhabiting areas where lethal controls are not legal or safe. Single or multiple inoculations of porcine zona pellucida (PZP) vaccine have been delivered to wild horses and deer by means of darts. Contraceptive efficacy in horses after two inoculations ranged from 90% to 100%, and after a single inoculation ranged from 19% to 28%. Mares given a controlled-release form of the vaccine had foaling rates ranging from 7% to 20%. No detectable changes in social organization or behaviours among treated h...
[Wild horse or domesticated horse? Horse remains from the neolithic settlement in Pestenacker, Bavaria].
Tierarztliche Praxis    August 1, 1996   Volume 24, Issue 4 344-346 
Vagedes K.The bone finds from the neolithic settlement in Pestenacker (near Landsberg am Lech) date back to the second half of the 4th millennium BC (Altheim). Like in any other late neolithic horse bones, the question we have to deal with is whether they represent the remains of wild horse or early domestic horse, as we do not know for certain yet the date of the earliest domestic horses' occurrence in Middle Europe. The post pleistocene distribution of the wild horse is described. For a long time people thought that hardly any wild horses existed in post pleistocene Middle Europe any longer, due to th...
Applications of pig zona pellucida immunocontraception to wildlife fertility control.
Journal of reproduction and fertility. Supplement    January 1, 1996   Volume 50 183-189 
Kirkpatrick JF, Turner JW, Liu IK, Fayrer-Hosken R.A unique application of pig zona pellucida (PZP) immunocontraception is the control of wildlife populations. A native PZP vaccine has been successfully applied to wild horse and donkey populations. A single annual booster inoculation was capable of maintaining contraception. Seven consecutive years of PZP treatment in wild mares resulted in no detectable debilitating side effects, and reversibility of contraception has been documented among mares treated for up to 4 consecutive years. Long-term treatment (5-7 years) is associated with some ovulation failure and depressed urinary oestrogen conc...
Fertility control using intrauterine devices: an alternative for population control in wild horses.
Theriogenology    October 1, 1995   Volume 44, Issue 5 629-639 doi: 10.1016/0093-691x(95)00243-2
Daels PF, Hughes JP.The purpose of this study was to develop a contraceptive method for feral horses. The feral horse population has increased significantly in recent years despite attempts to control numbers. As in most wild animal population control programs, contraceptive methods must be easy to apply, cause minimal disruption to the social structure and be fully reversible. In the present study, we tested the effectiveness of an intrauterine device (IUD) for fertility control in mares. Six mares were fitted with a silastic O-ring-shaped IUD on July 1 of Year 1. The IUD-treated mares were turned out with 12 no...
Harem stability and reproductive success of Misaki feral mares.
Equine veterinary journal    September 1, 1995   Volume 27, Issue 5 368-372 doi: 10.1111/j.2042-3306.1995.tb04072.x
Kaseda Y, Khalil AM, Ogawa H.The stability of relationships between harem stallions and mares (consort relations) was investigated and the durations of inter partum intervals were determined in order to establish if there was any correlation between the stability of consort relation and reproductive success of mares in Misaki feral horses. Thirty-four mares were observed continuously for more than 5 years. The lifetime stability was 80-100% (mean 92.4%) for 16 mares, 60-79% (mean 70.4%) for 10 mares and 0-59% (mean 27.9%) for 8 mares. The continuous length (years) of specific consort relations was 2-10 years and was found...
Population genetics of Great Basin feral horses.
Animal genetics    June 1, 1994   Volume 25 Suppl 1 67-74 doi: 10.1111/j.1365-2052.1994.tb00405.x
Bowling AT.The genetic make-up of Great Basin wild (feral) horses was investigated by blood typing studies. Blood samples of 975 feral horses from seven trap sites in Nevada and Oregon were tested by serological and electrophoretic techniques for genetic markers at 19 polymorphic loci. The average number of variants for the seven feral populations [72.1 +/- 3.2 (SEM), range 62-85] was not significantly different from that of 16 domestic breeds (75.0 +/- 11.5, range 58-105). The expected average frequency of heterozygotes per locus (average heterozygosity) for the feral populations (0.402 +/- 0.009, range...
[The characteristics of the helminth community in the Turkmen kulan (Equus hemionus)].
Parazitologiia    May 1, 1992   Volume 26, Issue 3 246-251 
Dvoĭnos GM, Kharchenko VA, Zviagnitsova NS.The helminth fauna of 24 kulans from Askaniya-Nova and Badkhyz was studied. 42 species of helminths were found, 34 of which belong to strongylids. The helminth species composition of kulan is similar to that of other species of horses. This is a result of an intensive parasite exchange in the historical past when numerous populations of different Equidae species made long seasonal migrations over steppe inter-river lands of Asia and grazed for some time on common pastures.
Hormonal contraception of feral mares with Silastic rods.
Journal of wildlife diseases    April 1, 1992   Volume 28, Issue 2 255-262 doi: 10.7589/0090-3558-28.2.255
Plotka ED, Vevea DN, Eagle TC, Tester JR, Siniff DB.Homogeneous Silastic rods containing ethinylestradiol (EE) (1.5 or 4 g), estradiol-17 beta (E) (4 g) or progesterone (P) (6 g) were implanted into feral mares (Equus caballus) between 4- and 10-yr-old. Six treatment groups (greater than or equal to 10 mares/group) of non-pregnant mares received 36 g P and 12 g E (P+E), 36 g P and 8 g EE (P+HEE), 1.5 g EE (LEE), 3 g EE (MEE, 8 g EE (HEE) or control-implanted mares (CI). CI received implants containing no steroid. Two groups of pregnant mares received P+HEE or HEE. Stallions were placed with the mares 15 to 26 mo after implanting. Blood was coll...
Long-term effects of porcine zonae pellucidae immunocontraception on ovarian function in feral horses (Equus caballus).
Journal of reproduction and fertility    March 11, 1992   Volume 94, Issue 2 437-444 doi: 10.1530/jrf.0.0940437
Kirkpatrick JF, Liu IM, Turner JW, Naugle R, Keiper R.Ten feral mares free-roaming in Maryland, USA, were inoculated with porcine zonae pellucidae (PZP) protein before the breeding season for three consecutive years (1988-90). Ovarian function was monitored for 51 days during the peak of the breeding season after the third annual PZP inoculation, in seven of these mares and in four untreated control mares, by means of urinary oestrone conjugates and nonspecific progesterone metabolites. None of the ten inoculated mares became pregnant in 1990, compared with 55% of 20 control mares, which included two of the four monitored for ovarian function. Th...
The body condition of feral ponies on Assateague Island.
Equine veterinary journal    November 1, 1991   Volume 23, Issue 6 453-456 doi: 10.1111/j.2042-3306.1991.tb03760.x
Rudman R, Keiper RR.The summer body condition of 47 adult feral ponies on Assateague Island (off the coast of Maryland, USA) was assessed in June 1988 using a visual body condition scoring system. Winter body condition for 36 of the ponies was assessed in February and March, 1989. The ponies were categorised by gender, reproductive status and location on the island, and body condition scores of the ponies in each category were then compared by statistical analyses. No significant seasonal differences were found in the body conditions of the ponies. However, body condition of stallions was better than that of mare...
Investigating equine ingestive, maternal, and sexual behavior in the field and in the laboratory.
Journal of animal science    October 1, 1991   Volume 69, Issue 10 4161-4166 doi: 10.2527/1991.69104161x
Houpt KA.Some of the techniques that may be used to study social, reproductive, and ingestive behavior in horses are described in this paper. One of the aspects of equine social behavior is the dominance hierarchy or patterns of agonistic behavior. Paired or group feeding from a single food source may be used to determine dominance hierarchies quickly. Focal animal studies of undisturbed groups of horses may also be used; this method takes longer, but may reveal affiliative as well as agonistic relationships among the horses. Reproductive behavior includes flehmen, the functional significance of which ...
Water homeostasis in desert-dwelling horses.
Journal of applied physiology (Bethesda, Md. : 1985)    July 1, 1991   Volume 71, Issue 1 112-117 doi: 10.1152/jappl.1991.71.1.112
Sneddon JC, van der Walt JG, Mitchell G.This study set out to investigate tolerance of the body water pool to short-term water deprivation in horses and, in particular, to assess whether feral horses from the Namib Desert showed tolerance to dehydration superior to Transvaal. Hydration status was compared in six feral horses from the Namib Desert and in six Boerperd farm horses under conditions of normal hydration and after 72 h of dehydration. Under normal hydration, the two groups did not differ significantly in water intake, plasma sodium and potassium concentrations, plasma osmolality, hematocrit, total plasma protein, body wate...
Pregnancy determination in uncaptured feral horses by means of fecal steroid conjugates.
Theriogenology    April 1, 1991   Volume 35, Issue 4 753-760 doi: 10.1016/0093-691x(91)90416-b
Kirkpatrick JF, Shldeler SE, Lasley BL, Turner JW.This study was carried out to develop an accurate, rapid and inexpensive method for diagnosing pregnancy in uncaptured feral horses by analysis of fecal steroid metabolites and to compare the accuracy of this method with diagnosis by urinary estrone conjugates (E(1)C). Paired urine and fecal samples were collected from 40 sexually mature feral mares during August and October. Urine samples were extracted directly from the soil and analyzed by enzymeimmunoassay (EIA) for E(1)C. Water extracts of fecal samples were assayed by EIA for E(1)C and nonspecific progesterone metabolites (iPdG). Urinary...
Antigen recognition in feral mares previously immunized with porcine zonae pellucidae.
Journal of reproduction and fertility. Supplement    January 1, 1991   Volume 44 321-325 
Kirkpatrick JF, Liu IM, Turner JW, Bernoco M.Twenty-six free-roaming feral mares were immunized against porcine zonae pellucidae (PZP) between February and May, 1988. Eight sexually mature mares received 2 inoculations 2 weeks apart, and 18 mares received 3 inoculations at intervals of 2 and 4 weeks. Analysis of urinary oestrone conjugates (E1C) and non-specific progesterone metabolites (iPdG) in samples collected in October, 1988, revealed that none of the 18 mares that received 3 and only 1 of the 6 mares that received two inoculations were pregnant, whereas 3 of 6 sham-injected control mares and 5 of 11 untreated mares were pregnant. ...
Non-invasive assessment of the incidences of pregnancy and pregnancy loss in the feral horses of Sable Island.
Journal of reproduction and fertility. Supplement    January 1, 1991   Volume 44 479-488 
Lucas Z, Raeside JI, Betteridge KJ.Field observations of 400 totally unmanaged feral horses on Sable Island, Nova Scotia, were complemented by oestrogen determinations in faecal samples from 154 identified females over a 4-year period (454 mare-years). Of mares that were sampled throughout the year and subsequently produced foals, 92.1% exhibited elevated faecal oestrogens between 15 October and 30 March. The results confirm that faecal oestrogens are a useful indicator of pregnancy after approximately 120 days gestation. Distribution of foaling resembled that seen in other feral populations, with 95% of births occurring from A...
[Social and behavioral organization of horses on the Giara (Sardinia): distribution and aggregation].
Bollettino della Societa italiana di biologia sperimentale    November 1, 1990   Volume 66, Issue 11 1089-1096 
Cancedda M.In this paper some considerations on the environment of the 42 Kmq of the volcanic-basaltic Giara tableland are discussed. Conditioning by the environment and its effect on the distribution of a population of 712 horses is illustrated in view of their social and behavioural organization.
[The immobilization of wild equines with STH 2130 and tiletamine/zolazepam].
Tierarztliche Praxis    April 1, 1990   Volume 18, Issue 2 151-154 
Wiesner H, von Hegel G.Successful immobilisation of Przewalski's horses and zebras was obtained by using a combination of STH 2130 (Boehringer) and Tiletamin/Zolazepam.
A single gel for determining genetic variants of equine erythrocyte carbonic anhydrase (CA) and catalase (Cat).
Animal genetics    January 1, 1990   Volume 21, Issue 2 191-197 doi: 10.1111/j.1365-2052.1990.tb03224.x
Bowling AT, Gordon L, Penedo MC, Wictum E, Beebout J.We describe a method for agarose IEF under acid conditions in which a single gel can be used to diagnose from equine red cell lysates genetic variants for carbonic anhydrase (CA) and catalase (Cat). Family and population data for 4801 horses of 27 breeds and seven trap sites of Great Basin feral horses are presented to support the presence of a sixth CA allele, CAE, which has been recognized previously, but not described by published data. Allelic frequencies for the two systems suggest it may be appropriate to use this gel for parentage verification programmes or to obtain population data for...
Ovarian function in captive feral mares.
Journal of wildlife diseases    October 1, 1989   Volume 25, Issue 4 574-579 doi: 10.7589/0090-3558-25.4.574
Plotka ED, Vevea DN, Eagle TC, Siniff DB, Tester JR.Ovarian function was monitored for 33 mo in captive feral mares (Equus caballus) by following serum progesterone (P) levels. A P level greater than 2.0 ng/ml was considered indicative of ovulation. Feral mares were seasonally polyestrus with the majority of animals ovulating between May and October. During the first year after capture, none of the mares ovulated during the anestrous season. However, in subsequent years, approximately 10% of mares ovulated during the months of November, January and February. P levels during the luteal phase of the cycle ranged from 2.0 to 21.0 ng/ml which were ...
Brain cholinesterase activity in animals and birds.
Veterinary and human toxicology    August 1, 1988   Volume 30, Issue 4 329-331 
Blakley BR, Skelley KW.Normal cholinesterase activity in brain tissue was measured in various mammalian and avain species. The cholinesterase activity in the cerebrum of cattle, swine, sheep and horses was approximately 2-3 umoles/min/g of tissue in each instance. The whole brain cholinesterase activity of small feral mammals was approximately 2 to 5 fold greater than the domestic animals. Considerable interspecies variability was present in the feral mammals. Similar variability was also observed in the avian brain cholinesterase determinations. The avian whole brain cholinesterase activities ranged from 9.78 to 21...
Effects of hormone implants on estrus and ovulation in feral mares.
Journal of wildlife diseases    July 1, 1988   Volume 24, Issue 3 507-514 doi: 10.7589/0090-3558-24.3.507
Plotka ED, Eagle TC, Vevea DN, Koller AL, Siniff DB, Tester JR, Seal US.Five groups of 30 captive feral mares each were implanted with silastic rods containing estradiol (E) and/or progesterone (P): E only with 8 g, P only with 24 g, P+HE with 8 g P + 8 g E, HP+E with 12 g P + 4 g E, HP+LE with 12 g P + 2 g E. Arbitrary group designations were differentiated by relative high (H) and low (L) amounts of steroid. Thirty mares received silastic rods containing no hormone (CI). Five mares from each group were bled every 2 wk for 4 mo and monthly for another 5 mo. All mares were tested for estrus by allowing them to stand in an alley between two pens of stallions and vi...
Testis size and onset of spermatogenesis in Cape mountain zebras (Equus zebra zebra).
Journal of reproduction and fertility    May 1, 1988   Volume 83, Issue 1 371-375 doi: 10.1530/jrf.0.0830371
Penzhorn BL, van der Merwe NJ.Testis mass of adult Cape mountain zebra stallions (mean 70.0 g) was appreciably less than that of other zebra species and domestic horses. The histological appearance of the testes of 11-, 24- and 29-month-old colts was typically prepubertal. Spermatogenic activity of a 4-year-old stallion obtained at the end of summer was at a very low level, while a 4.5-year-old stallion obtained 6 weeks after the winter solstice showed a marked increase in spermatogenesis compared with the 4-year-old. Stallions 6.5-19 years of age collected in different seasons all showed active spermatogenesis.
Hematologic and blood chemical characteristics of feral horses from three management areas.
Journal of wildlife diseases    April 1, 1988   Volume 24, Issue 2 231-239 doi: 10.7589/0090-3558-24.2.231
Plotka ED, Eagle TC, Gaulke SJ, Tester JR, Siniff DB.Blood was collected from 486 feral horses of mixed sex and age classes captured from three wild horse management areas in Nevada and Oregon from December 1985 to February 1986. Males were significantly outnumbered by females in the Flanigan area, but both sexes were represented in approximately equal numbers in the Wassuk and Beaty's Butte areas. Hematology and chemistry values averaged 16.4 +/- 0.11, 46.3 +/- 0.28, 9.9 +/- 0.07, 6.9 +/- 0.10, 47.1 +/- 0.24, 16.6 +/- 0.09, 35.2 +/- 0.09, 10.4 +/- 0.14 and 23.4 +/- 0.25 for hemoglobin (HGB), hematocrit (HCT), red blood cells (RBC), white blood ...
Rapid reversible immobilization of feral stallions using etorphine hydrochloride, xylazine hydrochloride and atropine sulfate.
Journal of wildlife diseases    July 1, 1987   Volume 23, Issue 3 471-478 doi: 10.7589/0090-3558-23.3.471
Plotka ED, Seal US, Eagle TC, Asa CS, Tester JR, Siniff DB.Forty-eight newly captured free-ranging feral stallions (Equus caballus) from two different locations and six captive stallions were immobilized using combinations of etorphine hydrochloride, xylazine hydrochloride and atropine sulfate with or without acepromazine. Six animals were immobilized twice, 1 mo apart. The drugs were administered either intramuscularly (n = 13) or intravenously (n = 44). Mean immobilization time (+/- SE) after intravenous (i.v.) injection of etorphine, xylazine and atropine was 55 +/- 4 sec (range 20 to 185 sec) compared to 708 +/- 131 sec (range 390 to 1,140 sec) fo...
Influence of Familiarity on Frequency of Inbreeding in Wild Horses.
Evolution; international journal of organic evolution    January 1, 1987   Volume 41, Issue 1 229-231 doi: 10.1111/j.1558-5646.1987.tb05788.x
Berger J, Cunningham C.No abstract available
Social structure.
The Veterinary clinics of North America. Equine practice    December 1, 1986   Volume 2, Issue 3 465-484 doi: 10.1016/s0749-0739(17)30701-0
Keiper RR.Socially feral horses live in stable social groups characterized by one adult male, a number of adult females, and their offspring up to 2 years of age. Extra males either live by themselves or with other males in bachelor groups. The bands occupy nondefended home ranges that often overlap. Many abnormal behaviors seen in domestic horses occur because some aspect of their normal social behavior cannot be carried out in captivity.
Sexual behavior of mares.
The Veterinary clinics of North America. Equine practice    December 1, 1986   Volume 2, Issue 3 519-534 doi: 10.1016/s0749-0739(17)30704-6
Asa CS.Behavior during the estrous phase of the ovulatory cycle of the mare is analogous in most ways to that of estrous females of other species. Proceptive behaviors bring the mare into the proximity of the male and attract his attention. Positioning facilitates mounting, intromission, and ejaculation. Estrous signs appear to be more intense in the few days prior to ovulation than during the transition periods that separate the recurring estrous and diestrous phases. Sexual behavior is absent during diestrus. Detection of estrus in mares is problematic in that it requires the presence (or at least ...
Identification of Aedes campestris from New Mexico: with notes on the isolation of western equine encephalitis and other arboviruses.
Journal of the American Mosquito Control Association    December 1, 1986   Volume 2, Issue 4 529-534 
Clark GG, Crabbs CL, Bailey CL, Calisher CH, Craig GB.An arbovirus survey was conducted during August 1985 at White Sands Missile Range in southcentral New Mexico following a suspected arboviral disease epizootic among feral horses. A total of 20,566 mosquitoes (18,505 females and 2,061 males) and 8,900 biting gnats were collected and assayed for virus. Female mosquitoes were principally Aedes campestris (54.8%), Aedes dorsalis (30.4%) and Culex tarsalis (13.2%). Arboviruses were not isolated from biting gnats, but mosquitoes yielded a total of 37 viral isolates, including western equine encephalitis (WEE) (18), California serogroup (15), Cache V...
A feral population: wild horses of the great basin.
Science (New York, N.Y.)    August 8, 1986   Volume 233, Issue 4764 672 doi: 10.1126/science.233.4764.672
Jarman PJ.No abstract available