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Topic:Brain

The equine brain is a complex organ responsible for processing sensory information, regulating behavior, and controlling motor functions in horses. It plays a part in cognitive processes such as learning, memory, and decision-making. The equine brain is divided into several regions, each with distinct functions, including the cerebrum, cerebellum, and brainstem. Research in this area often focuses on understanding the neurological pathways and mechanisms that underlie equine behavior and performance. This topic encompasses studies that explore brain anatomy, neurophysiology, and the effects of various factors such as stress, training, and disease on brain function in horses. This page compiles peer-reviewed research studies and scholarly articles that investigate the structure, function, and health of the equine brain.
The pathogenicity in mice of respiratory, abortion and paresis isolates of equine herpesvirus-1.
Veterinary microbiology    June 1, 1983   Volume 8, Issue 3 301-305 doi: 10.1016/0378-1135(83)90082-2
Patel JR, Edington N.Eleven isolates of equine herpesvirus-1 (subtype 1) all infected the brain following intracerebral inoculation of 2 d.o. mice. Most isolates were from cases of paresis, abortion or respiratory disease in the U.K., but established strains were also included. They divided into two subgroups. The 5 less pathogenic isolates were characterized by being restricted predominantly to the olfactory lobes. The 6 pathogenic isolates included the three known to cause equine paresis and were detected in neurones throughout the brain as well as giving rise to viraemia and infecting bronchial and renal epithe...
Clinicopathologic features of brain herniation in animals.
Journal of the American Veterinary Medical Association    May 15, 1983   Volume 182, Issue 10 1111-1116 
Kornegay JN, Oliver JE, Gorgacz EJ.No abstract available
Distribution of internal carotid artery blood flow in the pony.
The American journal of physiology    January 1, 1983   Volume 244, Issue 1 H142-H149 doi: 10.1152/ajpheart.1983.244.1.H142
Orr JA, Wagerle LC, Kiorpes AL, Shirer HW, Friesen BS.This study determined whether blood flow through the internal carotid artery (ICA) could be used to sample total cerebral blood flow in the pony. To answer this question we considered both the anatomic arrangement of the ICA in cadavers and the relative distribution of ICA blood flow to cerebral and extracerebral tissue using radioactive microspheres. Acrylic corrosion casts of the ICA indicated that this vessel traveled directly to the base of the brain, contributing to the formation of the circle of Willis, and did not send any significant branches to other tissues. Two vessels (internal eth...
Observations on the isoenzymes of creatine kinase in equine serum and tissues.
Equine veterinary journal    October 1, 1982   Volume 14, Issue 4 317-321 doi: 10.1111/j.2042-3306.1982.tb02441.x
Argiroudis SA, Kent JE, Blackmore DJ.The isoenzymes of creatine kinase have been measured in serum and selected tissues from horses. The distribution followed that reported in other species in that the MM dimer of the isoenzyme was present in voluntary and non-voluntary muscle, thyroid, liver, spleen, lung and intestine. The BB dimer of the isoenzyme was predominant in brain, pancreas, kidney, intestine, lung, spleen, liver and thyroid. In contrast, in 4 hearts examined less than 1.5 per cent of the total creatine kinase activity was attributable to the MB form of the isoenzyme. The MB isoenzyme was, however, present in intestine...
Pineoblastoma, a primitive neuroectodermal tumor in the brain of a horse.
Veterinary pathology    September 1, 1982   Volume 19, Issue 5 567-569 doi: 10.1177/030098588201900516
Holshuh HJ, Howard EB.No abstract available
Migration of a spiruroid nematode through the brain of a horse.
Journal of the American Veterinary Medical Association    June 1, 1982   Volume 180, Issue 11 1306-1311 
Mayhew IG, Lichtenfels JR, Greiner EC, MacKay RJ, Enloe CW.A pregnant 10-year-old Paint mare was examined because of an acute neurologic disturbance. Physical examination revealed signs consistent with extensive, asymmetric brain stem disease. The hemogram, serum chemical panel, and results of lumbosacral spinal fluid analysis were within normal limits. A primary diagnosis of equine protozoal myeloencephalitis was considered, and the mare was placed on treatment with trimethoprim-sulfadiazine. After 5 weeks of steady improvement, an acute exacerbation of neurologic signs necessitated euthanasia of the mare. At necropsy, large, malacic tracts were foun...
Brain abscess in three horses.
Journal of the American Veterinary Medical Association    April 15, 1982   Volume 180, Issue 8 874-877 
Raphel CF.Three horses with brain abscesses had different clinical manifestations: 1 had a protracted clinical course whereas 2 had a short clinical course. Clinical signs in 2 horses (1 acute case, 1 chronic case) included unilateral loss of vision, head tilt, circling, abnormal mental status, and ataxia. The 3rd horse had bilateral loss of vision, altered mental status, and apparent deafness. Results of cerebrospinal fluid analysis were inconsistent. The horse with the protracted clinical course had paradoxic central vestibular disease.
Myocardial necrosis secondary to neural lesions in domestic animals.
Journal of the American Veterinary Medical Association    January 15, 1982   Volume 180, Issue 2 144-148 
King JM, Roth L, Haschek WM.Focal myocardial necrosis secondary to neural lesions was diagnosed in 2 dogs and 1 horse. In each case, the neural lesions were traumatic in origin. Spinal cord injury was evident in 1 dog; brain damage was evident in the other dog and presumably in the horse. Retrospective analysis of necropsy material showed that many species were affected, without apparent age or sex predisposition. Central nervous system injury resulting from trauma, infection or space-occupying lesions was associated with acute myocardial necrosis in all cases. The myocardial necrosis was rarely fatal; however, it did ca...
Observations on vascular accidents in the central nervous system of neonatal foals.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 569-575 
Mayhew IG.A technique for the subarachnoid perfusion-fixation of the central nervous system was developed to help identify various significant vascular accidents (SVAs) in the central nervous system (CNS) of 24 neonatal foals submitted for necropsy. SVAs, comprising subarachnoid, parenchymal and nerve root haemorrhages, and oedema and necrosis, occurred in 17 foals, more frequently in the spinal cord than the brain. They occurred as frequently in premature foals as in those born at full term, in foals born dead as in foals born alive, and in foals born following dystocia with an assisted delivery as in ...
Endotoxin-induced change in hemograms, plasma enzymes, and blood chemical values in anesthetized ponies: effects of flunixin meglumine.
American journal of veterinary research    January 1, 1982   Volume 43, Issue 1 140-144 
Fessler JF, Bottoms GD, Roesel OF, Moore AB, Frauenfelder HC, Boon GD.A study was made of flunixin meglumine (FM), an analgesic agent with antiprostaglandin activity, in the management of endotoxin-induced changes in ponies. Three groups of 5 ponies each were used: A--controls, B--nontreated ponies with endotoxin-induced shock, and C--ponies with endotoxin-induced shock treated with FM. Shock was induced in anesthetized ponies with IV injections of Escherichia coli endotoxin. Disruption of glucose homeostasis, insulin levels, hemograms, aerobic metabolism, and cell damage as indicated by plasma enzymes were observed. Treatment with FM (5 minutes) after shock was...
[Gangliosides of neural and extraneural tissues of various species of mammals].
Revista espanola de fisiologia    January 1, 1982   Volume 38 Suppl 37-43 
Reglero A, Hueso P, Rodrigo M, García-Alonso J, Llanillo M, Cabezas JA.The ganglioside patterns of the forebrain, cerebellum and brain stem from horse, donkey, mule and goat have been determined by thin-layer chromatography. GM1, GD1a, GD1b and GT1b are the four major brain gangliosides. N-acetylneuraminic acid as the predominant sialic acid (congruent to 97%) and traces of N-glycolyneuraminic acid were found. The four above mentioned major gangliosides were also found in the forebrain, cerebellum and brain stem of adult rats. This pattern is not modified in rats under stress situation (at 4 degrees C for 3 months). In other extraneural organs from rats such as l...
Distribution of 5′-nucleotidase and gamma glutamyl transferase activities in the tissues of the horse.
Research in veterinary science    November 1, 1981   Volume 31, Issue 3 312-314 
Ford EJ, Adam SE.In the horse, 5'-nucleotidase (5'-NT) activity is found mainly in homogenates of lung, kidney, small intestine, mammary gland, liver and pancreas. Lower activities are present in brain and muscle. Activity can be demonstrated histochemically in the glomeruli and tubules of the kidney, in the sinusoidal borders of the hepatocytes and the bile duct epithelium as well as in the blood vessels of all organs. There is no significant difference between the 5'-NT activity in serum and plasma of normal horses and of horses suffering from a range of orthopaedic conditions. Previous findings that gamma g...
Diagnosis of eastern equine encephalomyelitis by immunofluorescent staining of brain tissue.
American journal of veterinary research    August 1, 1981   Volume 42, Issue 8 1418-1421 
Monath TP, McLean RG, Cropp CB, Parham GL, Lazuick JS, Calisher CH.Brain tissues were obtained from 5 horses with clinical encephalomyelitis during an epizootic in southwestern Michigan in August-September 1980. These tissues were tested for virus by intracerebral inoculation of suckling mice and by examination of frozen sections and impression smears by the indirect fluorescent antibody (FA) technique. Eastern equine encephalomyelitis virus was isolated and detected by FA technique in brains of 3 horses which died or were euthanatized within approximately 24 hours of onset of the disease but not from 2 horses at 2 and 3 days after onset. The latter 2 animals...
Erosion of the internal carotid artery and cranial nerve damage caused by guttural pouch mycosis in a horse.
Australian veterinary journal    July 1, 1981   Volume 57, Issue 7 346-347 doi: 10.1111/j.1751-0813.1981.tb05846.x
Hilbert BJ, Huxtable CR, Brighton AJ.No abstract available
Estrogen-sensitive morphological plasticity inthe third ventricle of seasonally anovulatory mares.
Biology of reproduction    May 1, 1981   Volume 24, Issue 4 945-954 doi: 10.1095/biolreprod24.4.945
Melrose P, Douglas RH.No abstract available
Equine protozoal myeloencephalitis: a report of two cases from Western Canada.
The Canadian veterinary journal = La revue veterinaire canadienne    May 1, 1981   Volume 22, Issue 5 140-144 
Clark EG, Townsend HG, McKenzie NT.Two cases of nonsuppurative myeloencephalitis are reported which clinically and pathologically resemble equine protozoal myeloencephalitis. Lesions in both horses were associated with Toxoplasma-like organisms visible in microscopic sections. Clinical signs and lesions in one case primarily involved the brain and in the other case principally involved the spinal cord and associated meninges. Positive identification of the organisms was not achieved; however, the etiological agent is unlikely to be a species of Toxoplasma. Recently published studies suggest a species of Sarcocystis is involved....
Solubility of halothane in equine tissues at 37 degrees C.
British journal of anaesthesia    May 1, 1981   Volume 53, Issue 5 479-486 doi: 10.1093/bja/53.5.479
Webb AI, Weaver BM.The solubilities of halothane at a concentration of 0.77% v/v in 5% carbon dioxide in air at 37 degrees C were determined for a variety of equine tissues. The mean values for the tissue/gas partition coefficients for visceral tissue taken from 36 horses were 5.42 for whole brain, 4.82 for grey matter, 7.41 for white matter, 4.18 for myocardium, 2.76 for lung, 8.51 for liver, 3.21 for kidneys, 2.66 for gastrointestinal tract, 1.77 for blood and 2.45 for spleen. The mean coefficients for eight different muscles taken from 23 horses ranged from 2.43 for extensor carpi radialis to 4.91 for psoas m...
GnRH localization in the equine brain and infundibulum: an immunohistochemical study.
Brain research    March 9, 1981   Volume 208, Issue 1 123-134 doi: 10.1016/0006-8993(81)90625-9
Dees WL, Sorensen AM, Kemp WM, McArthur NH.Immunohistochemical localization of the decapeptide gonadotropin releasing hormone (GnRH) in neural structures in the pony brain and infundibulum (INF) was conducted at the light-microscopic level. This procedure utilized an antiserum generated against GnRH conjugated to bovine serum albumin. In the rostral INF, GnRH was distributed mainly in the external layer, with greatest concentrations adjacent to the long capillary loops of the hypophyseal portal system. The intermediate portion of the INF contained the hormone throughout the external layer, especially in the dorsolateral regions just ve...
Brainstem auditory evoked response in the diagnosis of inner ear injury in the horse.
Journal of the American Veterinary Medical Association    February 1, 1981   Volume 178, Issue 3 282-286 
Marshall AE, Byars TD, Whitlock RH, George LW.Brainstem auditory evoked response (BAER) testing was done to evaluate inner ear/VIIIth cranial nerve (CN8) function in the horse. The BAER test consisted of stimulating the auditory system with clicks and recording far-field responses of the brainstem auditory components via cutaneous electrodes and a signal averaging system. The normal response was shown to be a series of waves occurring within the first 10 msec after the stimulus click. Functional loss of the auditory receptor organ (cochlea) or CN8 results in loss of the entire response on the side of the injury. Because of the anatomic re...
Normal and abnormal sleep in mammals.
Journal of the American Veterinary Medical Association    January 15, 1981   Volume 178, Issue 2 121-126 
Hendricks JC, Morrison AR.No abstract available
Separation and properties of beta-N-acetylglucosaminidases A, B and I from horse brain.
The International journal of biochemistry    January 1, 1981   Volume 13, Issue 7 837-842 doi: 10.1016/0020-711x(81)90104-x
Reglero A, Esteban M, Cabezas JA.No abstract available
[3H]5-HT binding sites and 5-HT-sensitive adenylate cyclase in glial cell membrane fraction.
Brain research    October 6, 1980   Volume 198, Issue 2 361-374 doi: 10.1016/0006-8993(80)90750-7
Fillion G, Beaudoin D, Rousselle JC, Jacob J.Glial cell membrane fractions were prepared using glial cells preparations isolated from horse brain striatum. [3H]5-HT binding was measured by the filtration technique and the adenylate cyclase activity determined by measuring the cAMP production using a radioimmunoassay. Serotonin binds to glial membrane fractions with an affinity corresponding to a dissociation constant Kd = nM. The corresponding site is serotoninergic specific: [3H]5-HT binding is inhibited by 5-HT agonists (5 OH NM-DMT, 5-MeOHT, 5-MeOH-DMT, NN-DMT) or antagonists (cinanserine, cyproheptadine, methysergide, LSD) and not (o...
Pathogaenicity of Toxoplasma gondii oocysts to ponies.
American journal of veterinary research    September 1, 1980   Volume 41, Issue 9 1549-1551 
Al-Khalidi NW, Weisbrode SE, Dubey JP.Nine ponies were fed 100,000 infective Toxoplasma gondii oocysts and were given corticosteroid injections before and after feeding the T gondii oocysts. Titers to the Sabin-Feldman dye tests (1:2 to 1:16,384) developed within postinoculation days (PID) 7 to 21 and antibodies persisted to PID 133. Toxoplasma organisms were isolated from the tissues of 4 ponies (heart of 4, brain of 2, spinal cord of 3, diaphragm of 1, skeletal muscle of 1, liver of 1, kidneys of 1) killed between PID 36 and 63, but not from 5 ponies killed between PID 117 and 150. Seemingly, ponies are one of the more resistant...
Pathological observations on an outbreak of paralysis in broodmares.
Equine veterinary journal    July 1, 1980   Volume 12, Issue 3 118-126 doi: 10.1111/j.2042-3306.1980.tb03398.x
Platt H, Singh H, Whitwell KE.A description is given of the pathological changes present in 8 mares which died or were euthanased in the course of an outbreak of paralysis on a Thoroughbred studfarm. In all cases the principal changes were in the central nervous system (CNS) and consisted of a severe and widespread vaculitis in the brain, cord, sheaths of nerves, capsules of ganglia and occasionally elsewhere in the body. Associated with the damage to vessel walls there was haemorrhage and exudation of plasma into the perivascular tissues. Involvement of neurones was minimal and no neuronophagia was present. Six cases had ...
Ganglioside pattern and sialic acid content of horse, donkey, and mule brain.
Journal of neurochemistry    March 1, 1980   Volume 34, Issue 3 744-746 doi: 10.1111/j.1471-4159.1980.tb11207.x
Reglero A, Garcia-Alonso J, Cabezas JA.No abstract available
Evaluation of the double immunodiffusion test for the diagnosis of louping ill infection.
Research in veterinary science    March 1, 1980   Volume 28, Issue 2 195-198 
Timoney PJ.The usefulness of the double immunodiffusion test for the diagnosis of louping ill infection was investigated. Whereas louping ill viral antigen was not detected in brain material from field cases of the infection, its presence was readily confirmed in suckling mouse brain isolates of the virus. The double immunodiffusion test was found to be unreliable as a serological test for the retrospective diagnosis of louping ill infection in the horse.
Basilar skull fractures in three horses.
Journal of the American Veterinary Medical Association    February 1, 1980   Volume 176, Issue 3 228-231 
Stick JA, Wilson T, Kunze D.Of three horses with basilar skull fractures, two died within 48 hours. The remaining horse was euthanatized because of a locomotion deficit. Clinical signs included epistaxis followed by ataxia. In each case, the basi-occipital bone and ventral portion of the calvarium were involved in the fracture. Diagnosis was based on clinical signs or radiographic appearance of guttural pouches, or both.
Cerebral blood flow during normocapnic hyperoxia in the unanesthetized pony.
Journal of applied physiology: respiratory, environmental and exercise physiology    January 1, 1980   Volume 48, Issue 1 10-15 doi: 10.1152/jappl.1980.48.1.10
Busija DW, Orr JA, Rankin JH, Liang HK, Wagerle LC.The effect of hyperoxia on cerebral blood flow (CBF) was examined in 12 unanesthetized ponies. CBF was determined using radioactive microspheres, 15 micrometer in diam, durijng inspriation of the following gases: 1) room air (control); 2) 40% I2 in N2; and 3) approximately 100% O2 with 2.2-4.5% CO2 added to maintain isocapnia. CBF did not change from control values during either level of hyperoxia. However, cerebrospinal fluid (CSF) carbon dioxide tension (PCO2) increased during 40% O2 (delta 1.0 Torr) and approximately 100% O2 (delta 2.9 Torr). This rise in CSF PCO2, not due to a change in CB...
Development of the equine venous sinuses of the dura mater.
Anatomia, histologia, embryologia    June 1, 1979   Volume 8, Issue 2 124-137 doi: 10.1111/j.1439-0264.1979.tb00685.x
Vitums A.No abstract available
Adenocarcinoma of the frontal sinus with extension to the brain in a horse.
Journal of the American Veterinary Medical Association    April 1, 1979   Volume 174, Issue 7 734-736 
Reynolds BL, Stedham MA, Lawrence JM, Heltsley JR.A space-occupying intracranial mass was diagnosed in a horse. The clinical findings included blindness, circling to the right, apprehension, anorexia, weight loss, and leaning against the stall. On ophthalmoscopic examination, the most striking observation was complete bilateral devascularization of the retinas. The horse was euthanatized and necropsied. Necroscopy revealed the mass to occupy the olfactory and frontal areas of the left hemisphere of the brain and part of the left frontal sinus. Microscopically, the mass was an adenocarcinoma and probably arose from the lining epithelium of the...