Analyze Diet

Topic:Public Health

The topic of Public Health and horses encompasses the study of interactions between equine populations and human health systems. It involves examining the transmission of zoonotic diseases, which are diseases that can be transferred between animals and humans, as well as the role of horses in the epidemiology of such diseases. This field also considers the impact of equine-related activities on public health, including injuries and environmental effects. Research in this area often explores preventive measures, management strategies, and policies to mitigate health risks associated with horses. This page compiles peer-reviewed research studies and scholarly articles that investigate the intersection of equine and public health, focusing on disease transmission, risk assessment, and health management strategies.
Competition animals: the welfare implications assessed.
The Veterinary record    February 6, 1993   Volume 132, Issue 6 122-123 doi: 10.1136/vr.132.6.122
No abstract available
Trypanosomiasis of domestic animals in China.
Parasitology today (Personal ed.)    February 1, 1993   Volume 9, Issue 2 41-45 doi: 10.1016/0169-4758(93)90029-f
Lun ZR, Fang Y, Wang CJ, Brun R.Trypanosomiasis caused by Trypanosoma evansi (surra) is a problem of great economic importance in livestock in China because it affects important working animals: buffaloes in the south and east, and horses and cattle in the north and west. In addition, buffaloes are an important source of meat and leather for the Chinese population. In the north and west, T. evansi is found mainly in camels, whereas in the east, the south and the southwest, it is primarily buffaloes, cattle and horses that are affected by this parasitic flagellate. Although trypanosomiasis is one of the most important parasit...
Chronic selenosis in horses fed locally produced alfalfa hay.
Journal of the American Veterinary Medical Association    February 1, 1993   Volume 202, Issue 3 406-409 
Witte ST, Will LA, Olsen CR, Kinker JA, Miller-Graber P.Chronic selenosis (alkali disease) was diagnosed in horses of western Iowa, a region associated with marginal to adequate soil selenium. Two locally produced alfalfa hays (Medicago sativa L) were identified as the primary source. Difficulty in selecting diagnostic specimens to evaluate potential chronic selenosis cases is complicated by the wide range of tissue concentrations reported in previous cases, conflicting correlation of sample selenium concentrations in the literature, and different recommendations on specimen selection and diagnostic value. These problems arise form the similarity i...
Nervous system injuries in horseback-riding accidents.
The Journal of trauma    February 1, 1993   Volume 34, Issue 2 227-232 doi: 10.1097/00005373-199302000-00008
Hamilton MG, Tranmer BI.A review of 156 horseback-riding accidents that occurred in southern Alberta over a 6-year period and resulted in nervous system trauma, including 11 deaths, is presented. The majority (81%) of accidents occurred during recreational activity and 81% were associated with falling or being thrown from a horse. Head injury occurred in 92% of patients and accounted for all of the 11 deaths. Spinal injury occurred in 13% of the patients and was associated with head injury in 40%. One peripheral nerve injury was identified. Helmets were used by only two victims. The 11 deaths that occurred as a conse...
Investigation of selenium sources associated with chronic selenosis in horses of western Iowa. Witte ST, Will LA.No abstract available
Current status of the diagnosis and control of African horse sickness.
Veterinary research    January 1, 1993   Volume 24, Issue 2 189-197 
Rodriguez M, Hooghuis H, Castaño M.African horse sickness (AHS) is an infectious, non-contagious, highly fatal viral disease of Equidae, transmitted by arthropod vectors of the genus Culicoides, and endemic in Africa south and east of the Sahara. The disease is caused by a virus of the Reoviridae family, genus Orbivirus, and 9 serotypes have been recognized. Recent outbreaks of AHS in the Iberian peninsula and Northern Africa emphasize the need for accurate diagnosis and rapid implementation of control measures. In this paper, the epizootiological factors, clinical signs and necropsy findings of AHS are discussed, and an update...
Did vaccinia virus come from a horse?
Equine veterinary journal    January 1, 1993   Volume 25, Issue 1 8-10 doi: 10.1111/j.2042-3306.1993.tb02892.x
Taylor CE.No abstract available
Epizootic of equine influenza in 1969 in Poland.
Archivum veterinarium Polonicum    January 1, 1993   Volume 33, Issue 3-4 139-145 
Kita J.Epidemiological observations on the course and spread of equine influenza in Poland during the 1969 epizootic were carried out. The dynamics of the spread of the disease in the country are shown graphically by voivodship. The disease incidence and mortality rates for the entire country are also shown. The highest incidence of disease and mortality rates were found to be in November 1969. A/equi-2/Warsaw/69 was identified as the causal virus. It caused the largest epizootic in the country since 1954.
Unravelling the ecology of influenza A virus.
History and philosophy of the life sciences    January 1, 1993   Volume 15, Issue 1 23-32 
Beveridge WI.For 20 years after the influenza A virus was discovered in the early 1930s, it was believed to be almost exclusively a human virus. But in the 1950s closely related viruses were discovered in diseases of horses, pigs and birds. Subsequently influenza A viruses were found to occur frequently in many species of birds, particularly ducks, usually without causing disease. Researchers showed that human and animal strains can hybridise thus producing new strains. Such hybrids may be the cause of pandemics in man. Most pandemics have started in China or eastern Russia where many people are in intimat...
WHO/OIE meeting: consultation on newly emerging strains of equine influenza. 18-19 May 1992, Animal Health Trust, Newmarket, Suffolk, UK.
Vaccine    January 1, 1993   Volume 11, Issue 11 1172-1175 doi: 10.1016/0264-410x(93)90092-c
Mumford J, Wood J.No abstract available
African horse sickness: transmission and epidemiology.
Veterinary research    January 1, 1993   Volume 24, Issue 2 199-212 
Mellor PS.African horse sickness (AHS) virus causes a non-contagious, infectious, arthropod-borne disease of equines and occasionally of dogs. The virus is widely distributed across sub-Saharan African where it is transmitted between susceptible vertebrate hosts by the vectors. These are usually considered to be species of Culicoides biting midges but mosquitoes and/or ticks may also be involved to a greater or lesser extent. Periodically the virus makes excursions beyond its sub-Saharan enzootic zones but until recently does not appear to have been able to maintain itself outside these areas for more t...
Laboratory transmission of eastern equine encephalomyelitis virus to chickens by chicken mites (Acari: Dermanyssidae).
Journal of medical entomology    January 1, 1993   Volume 30, Issue 1 281-285 doi: 10.1093/jmedent/30.1.281
Durden LA, Linthicum KJ, Monath TP.Pools of adult female chicken mites, Dermanyssus gallinae (De Geer), were allowed to feed on chicks that had been inoculated with eastern equine encephalomyelitis (EEE) virus and that had a viremia level of 10(6.2)-10(6.6) plaque-forming units per milliliter of blood. Virus remained detectable by plaque assay in samples of these mites for 30 d after the infectious blood meal. Virus was not recovered from any of 151 progeny of virus-exposed female mites. Mites that had fed on viremic chicks were allowed to feed on naive chicks 3, 7, 11, 15, or 30 d later. EEE virus was transmitted to chicks by ...
Recommendations for African horse sickness vaccines for use in nonendemic areas.
Revue d\'elevage et de medecine veterinaire des pays tropicaux    January 1, 1993   Volume 46, Issue 1-2 77-81 
House JA.African horse sickness (AHS), which causes mortality up to 95%, is caused by orbiviruses and is transmitted by Culicoides. The goal of a control and eradication program for AHS is to prevent the spread of the virus via the biological vector. Control measures include slaughter of infected animals, housing of suspected infected animals in insect-proof stalls, and vaccination. Vaccination has played a key role in eradication when AHS occurred outside of Africa. Both modified live vaccines (MLV) and inactivated vaccines have been used to control AHS. An acceptable vaccine should be: safe, efficaci...
Haemagglutination-inhibiting antibodies against African horse sickness virus in domestic animals in Nigeria.
Veterinary research    January 1, 1993   Volume 24, Issue 6 483-487 
Baba SS, Olaleye OD, Ayanbadejo OA.A sero-epidemiological survey of African horse sickness (AHS) virus in 261 animals which included 96 camels, 81 horses, 80 dogs and 4 donkeys was carried out in Nigeria. The animals had no history of vaccination against AHS. Sera were tested by the haemagglutination-inhibition (HI) test for the presence of antibody against AHS virus. Of these, 77 (95.1%) horse, 4 (100%) donkey, 10 (10.4%) camel and 28 (35%) dog sera samples tested were recorded as positive. The prevalence of antibody in samples taken from horses in different regions was similar. The prevalence of antibody to AHS virus detected...
Strategies of a successful campaign to promote the use of equestrian helmets.
Public health reports (Washington, D.C. : 1974)    January 1, 1993   Volume 108, Issue 1 121-126 
Condie C, Rivara FP, Bergman AB.Although the risk of serious head injury for horse riders is higher than for most other sports, few equestrians regularly wear protective headgear. This study indicates that riders are well informed about the need for helmets and that the main reason for nonuse is inadequate helmet design. In particular, riders perceive that existing helmets are uncomfortable, expensive, and inappropriate for some riding styles. Based on these findings, the authors developed strategies to increase usage and incorporated them into a successful program. These strategies included working with manufacturers to dev...
Eastern equine encephalitis virus in Ohio during 1991.
Journal of medical entomology    January 1, 1993   Volume 30, Issue 1 217-222 doi: 10.1093/jmedent/30.1.217
Nasci RS, Berry RL, Restifo RA, Parsons MA, Smith GC, Martin DA.During August and September of 1991, an epizootic of eastern equine encephalitis (EEE) virus in horses occurred in Wayne and Holmes countries, OH. This was the first recorded epizootic of EEE virus in the state. Twelve horses were confirmed positive for EEE virus through virus isolation or seroconversion, and seven additional horses with compatible symptoms were in close spatial and temporal proximity to the confirmed cases and were presumed to have died from EEE virus. The outbreak was centered around the Killbuck Wildlife Area, a 2,147-ha tract maintained by the state, half of which consists...
[Venezuelan equine encephalitis. Determination of antibodies in the human population of Municipio Mirand, Estado Zulia, Venezuela].
Investigacion clinica    January 1, 1993   Volume 34, Issue 3 135-141 
Ryder S, Núñez-Camargo J, Rangel P, Añez F.With the purpose of determining antibodies prevalence against Venezuelan Equine Encephalitis Virus in the population of Puertos de Altagracia and Sabaneta de Palmas of Miranda county, Zulia State, Venezuela, 199 subjects were studied: 57 from Puertos de Altagracia and 142 from Sabaneta de Palmas. They were classified in older (42.78%) and younger (57.2%) than 15 years. The blood specimens were processed for Hemagglutination Inhibition Test using EEV antigen Goajira strain at pH 6.5. We found that all 57 specimens from Puertos de Altagracia were negative, whereas of 142 specimens from Sabaneta ...
Effect of temperature on the transmission of western equine encephalomyelitis and St. Louis encephalitis viruses by Culex tarsalis (Diptera: Culicidae).
Journal of medical entomology    January 1, 1993   Volume 30, Issue 1 151-160 doi: 10.1093/jmedent/30.1.151
Reisen WK, Meyer RP, Presser SB, Hardy JL.The extrinsic incubation rate (inverse of the time in days from infection to median transmission) of western equine encephalomyelitis (WEE) and St. Louis encephalitis (SLE) viruses by laboratory strains of Culex tarsalis Coquillett increased as a linear function of incubation temperatures from 10 to 30 degrees C. The estimated temperatures for zero transmission thresholds (intercept of the X axis) were 10.9 and 14.9 degrees C, and the number of degree days above these thresholds required for median transmission (inverse of the slope) was 67.6 and 115.2, respectively. Although the bodies of mos...
Molecular evidence for the origin of the widespread Venezuelan equine encephalitis epizootic of 1969 to 1972.
The Journal of general virology    December 1, 1992   Volume 73 ( Pt 12) 3301-3305 doi: 10.1099/0022-1317-73-12-3301
Kinney RM, Tsuchiya KR, Sneider JM, Trent DW.Venezuelan equine encephalitis (VEE) virus is a mosquito-borne pathogen that has caused encephalitis in equine species and humans during sporadic outbreaks in the western hemisphere. The last, and most widespread, VEE outbreak occurred in South America, Central America, Mexico and the U.S.A. (Texas) during 1969 to 1972. We have cloned and sequenced the genome of a virulent VEE subtype I-AB virus, strain 71-180, isolated in Texas in 1971. Thirty-four nucleotide differences were detected between the genome of 71-180 virus and that of the subtype I-AB Trinidad donkey (TRD) virus isolated during t...
Basis for regulation of selenium supplements in animal diets.
Journal of animal science    December 1, 1992   Volume 70, Issue 12 3922-3927 doi: 10.2527/1992.70123922x
Ullrey DE.Selenium was discovered 174 yr ago but, until 1957, was given little notice by biologists or was vilified as an agent that caused toxicity in grazing ruminants and horses in the northern Great Plains. After its status as an essential nutrient was established, Se received intense scrutiny, and hundreds of papers have been published dealing with its metabolic functions and the consequences of a Se deficiency. Because regions of Se deficiency are so extensive in the United States, great efforts have been made to gain Food and Drug Administration (FDA) approval for Se supplementation of animal die...
Adverse drug reactions: report of the Australian Veterinary Association Adverse Drug Reaction Subcommittee, 1992.
Australian veterinary journal    November 1, 1992   Volume 69, Issue 11 288-291 doi: 10.1111/j.1751-0813.1992.tb09896.x
Maddison JE.Fifty-nine reports of suspected adverse drug reactions (ADRs) were received by the Adverse Drug Reaction Subcommittee of the Australian Veterinary Association from February 1991-March 1992 inclusive. The number of reports received/number of animals involved per species was: dogs (23/24); cats (20/30); horses (4/4); cattle (7/10); sheep (3/745); poultry (1/580); pigs (1/8). Of these, 38 (64%) were classified as definite ADRs and 9 (15%) as probable ADRs. In 10 (17%) reports an ADR could not be substantiated or there was insufficient information available to make a decision. Two reports involved...
African horse sickness and equine infectious anaemia serology in The Gambia.
Tropical animal health and production    November 1, 1992   Volume 24, Issue 4 207-208 doi: 10.1007/BF02356746
Mattioli RC, Zinsstag J, Pfister K.No abstract available
Phylogenetic analysis of alphaviruses in the Venezuelan equine encephalitis complex and identification of the source of epizootic viruses.
Virology    November 1, 1992   Volume 191, Issue 1 282-290 doi: 10.1016/0042-6822(92)90190-z
Weaver SC, Bellew LA, Rico-Hesse R.We studied the evolution of alphaviruses in the Venezuelan equine encephalitis (VEE) complex using phylogenetic analysis of RNA nucleotide sequences from limited portions of the nsP4, E1, and 3' untranslated genome regions of representative strains. The VEE complex constituted a monophyletic group of viruses (descended from a common ancestor); some serologic VEE varieties such as subtype III formed monophyletic groups while subtype I did not. Subtype II Everglades and variety ID enzootic viruses formed a monophyletic group which also included all epizootic variety IAB and IC VEE isolates. Ever...
African horse sickness in Spain.
Veterinary microbiology    November 1, 1992   Volume 33, Issue 1-4 129-142 doi: 10.1016/0378-1135(92)90041-q
Rodriguez M, Hooghuis H, Castaño M.The aetiology, pathogenesis and epizootiology of African horse sickness (AHS) are reviewed with special reference to recent outbreaks in the Iberian peninsula. AHS is a highly fatal insect-borne viral disease of Equidae. It is caused by an Orbivirus (family Reoviridae) and nine serotypes are recognised. Outbreaks occurred in central Spain in 1987 and in southern regions of the Iberian peninsula in 1988, 1989 and 1990. All were associated with serotype 4 of the virus, whereas other occurrences of AHS outside Africa have all been caused by serotype 9. The clinical picture in the outbreaks was ma...
Cross-reactivity of existing equine influenza vaccines with a new strain of equine influenza virus from China.
The Veterinary record    October 24, 1992   Volume 131, Issue 17 388-391 doi: 10.1136/vr.131.17.388
Chambers TM.A novel strain of equine influenza virus, influenza A/equine/Jilin (China)/1/89, has emerged which is genetically distinct from all earlier strains of equine influenza. It is therefore possible that the vaccines against equine influenza may be unable to protect horses against disease caused by this virus strain. In vitro serological assays established that there were low levels of immunological cross-reactivity between the new virus, the current vaccine strains and the strains of equine-2 influenza virus now in circulation.
Veterinary service market for companion animals, 1992. Part II: Veterinary service use and expenditures.
Journal of the American Veterinary Medical Association    October 15, 1992   Volume 201, Issue 8 1174-1176 
Wise JK, Yang JJ.No abstract available
[Legionella antibodies in domestic animals].
Ceskoslovenska epidemiologie, mikrobiologie, imunologie    October 1, 1992   Volume 41, Issue 5 268-273 
Bazovská S, Awad-Masalmeh M, Kmety E, Spaleková M.Serological examination of 420 domestic animals for the presence of antilegionella antibodies indicates their high exposure to legionellae. On examination by the microagglutination reaction with a serum dilution of 1:64 or more the highest positive values were recorded in horses which reacted with antigens of L. pneumophila 1-14 in 36.2% and with antigens of another 19 types of legionellae in 47.8%. In pigs positive values recorded in 16.2% and in 21.1%; in cattle in 3.8% and 29.5%, in sheep in 7.5% and 11.3% and laboratory rabbits were quite negative. The importance of these findings with reg...
Equine vaccination.
The Veterinary record    September 19, 1992   Volume 131, Issue 12 271 doi: 10.1136/vr.131.12.271-b
Muirhead FS.No abstract available
Genomic variability among globally distributed isolates of equine arteritis virus.
Veterinary microbiology    September 1, 1992   Volume 32, Issue 2 101-115 doi: 10.1016/0378-1135(92)90099-f
Murphy TW, McCollum WH, Timoney PJ, Klingeborn BW, Hyllseth B, Golnik W, Erasmus B.Equine arteritis virus (EAV), a non-arthropod borne togavirus, has been shown to have a global distribution. To date, no major antigenic variation has been demonstrated between EAV isolates from different geographic origins. In this study, the genomic RNA of EAV isolates obtained from horses of different breeds in various countries around the world was oligonucleotide fingerprinted. Comparisons of these fingerprints were used to determine the extent of genomic variation among such isolates. Comparisons among isolates from North American horses revealed, for the most part, oligonucleotide homol...
Detection of group C rotavirus antigens and antibodies in animals and humans by enzyme-linked immunosorbent assays.
Journal of clinical microbiology    August 1, 1992   Volume 30, Issue 8 2129-2134 doi: 10.1128/jcm.30.8.2129-2134.1992
Tsunemitsu H, Jiang B, Saif LJ.Enzyme-linked immunosorbent assays (ELISAs) were developed to detect group (gp) C rotavirus antigens and antibodies. Both assays were confirmed to be specific for gp C rotavirus by using serogroup A, B, and C rotaviruses; hyperimmune antisera to these serogroups of rotaviruses; and paired serum specimens from animals infected with gp C rotaviruses. The ELISA for antigen detection reacted not only with porcine gp C rotaviruses but also with human and bovine gp C rotaviruses. Following experimental challenge of gnotobiotic pigs with porcine gp C rotavirus, the virus was found by ELISA in all dia...