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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.
Stereochemical structures of synthesized and natural plasmalogalactosylceramides from equine brain.
Journal of lipid research    June 4, 1998   Volume 39, Issue 5 1039-1045 
Yachida Y, Kashiwagi M, Mikami T, Tsuchihashi K, Daino T, Akino T, Gasa S.Modified galactosylceramide with a long-chain cyclic acetal at the sugar moiety, plasmalogalactosylceramide, was isolated from equine brain. To identify the isomeric stereostructure of the natural product, the plasmalo derivative was chemically synthesized from galactosylceramide through acetalization. The presence of cyclic acetal linkage, the linked position and length of the acetal chain of the synthesized and natural products were determined by proton nuclear magnetic resonance spectroscopy and fast-atom bombardment-mass spectrometry, as well as gas chromatography-mass spectrometry and gas...
Further characterization of equine brain gangliosides: the presence of GM3 having N-glycolyl neuraminic acid in the central nervous system.
Journal of biochemistry    May 30, 1998   Volume 123, Issue 3 487-491 doi: 10.1093/oxfordjournals.jbchem.a021962
Mikami T, Kashiwagi M, Tsuchihashi K, Daino T, Akino T, Gasa S.Equine brain gangliosides were isolated and their structures were characterized, to examine whether equine brain has N-glycolyl neuraminic acid in gangliosides, since other mammals predominantly possess N-acetyl neuraminic acid in brain gangliosides, and equine erythrocytes and organs except the brain have gangliosides exclusively containing N-glycolyl neuraminic acid. The gangliosides purified from the brain were identified by proton NMR spectroscopy and mass spectrometry, as well as GLC, resulting in their identification as GM4, GM3, GM2, GM1, GD1a, GD1b, and GT1b. Of these gangliosides, GM3...
What is the function of the guttural pouches: selective brain cooling? Augmentation of swallowing? Still to be defined?
Veterinary journal (London, England : 1997)    May 2, 1998   Volume 155, Issue 2 115-117 doi: 10.1016/s1090-0233(98)80002-6
Hodgson DR.No abstract available
A preliminary study on the role of the equine guttural pouches in selective brain cooling.
Veterinary journal (London, England : 1997)    May 2, 1998   Volume 155, Issue 2 139-148 doi: 10.1016/s1090-0233(98)80009-9
Baptiste KE.The equine guttural pouch is a large, air-filled diverticulum of the auditory tube whose function is not clear. Since the horse does not possess a known, well-developed brain-cooling mechanism that could satisfy cerebral thermoregulatory demands, an hypothesis is proposed that respiratory air enters the guttural pouches, when needed, to ventilate and cool the internal carotid arteries (ICA). Experiments were initially carried out on nine cadavers, where blood flow was mimicked with warmed saline propelled by peristaltic pumps. Subsequent experiments were conducted on an anaesthetized horse whe...
Pyogranulomatous encephalitis associated with an unidentified Sarcocystis neurona-like organism in a horse. Hamir AN, Gerros TC, Dubey JP.No abstract available
Demonstration of Borna disease virus (BDV) in specific regions of the brain from horses positive for serum antibodies to BDV but negative for BDV RNA in the blood and internal organs.
Medical microbiology and immunology    June 1, 1997   Volume 186, Issue 1 19-24 doi: 10.1007/s004300050041
Hagiwara K, Momiyama N, Taniyama H, Nakaya T, Tsunoda N, Ishihara C, Ikuta K.Sero- and molecular-epidemiological studies on Borna disease virus (BDV) infection show that BDV RNA is not always detected in the peripheral blood mononuclear cells (PBMCs) from serum anti-BDV antibody-positive individuals such as horses, sheep, cattle, cats, and humans. In this study we demonstrated BDV RNA signals by polymerase chain reaction only in restricted regions of the brain from horses with locomotor disease. Four of six horses examined showed apparently positive reactions for anti-BDV antibodies. Specific regions of the brain of these four horses were positive for BDV RNA but the i...
Magnetic resonance imaging of the brain of normal neonatal foals. Chaffin MK, Walker MA, McArthur NH, Perris EE, Matthews NS.Magnetic resonance imaging (MRI) was performed on the brain of 5 normal, anesthetized, neonatal (age 3-to-6 days) Quarter Horse foals. The objectives of the study were to develop a technique for imaging the brain of neonatal foals, and to ascertain their normal brain anatomy. Intravenous propofol was administered for induction and maintenance of general anesthesia. Using spin echo MR techniques, T1 weighted sagittal and transverse views, and spin density and T2 weighted transverse views were successfully made of each foal. MR images provided excellent visualization of many anatomic structures ...
Total cholinesterase activity in discrete brain regions and retina of normal horses. Plumlee KH, Tor ER.The research evaluates cholinesterase activity across different brain regions in horses to better understand its role in neuromuscular function and how it can be affected by certain toxic exposures. Cholinesterase […]
Immunohistochemical demonstration of equine herpesvirus-1 antigen in neurons and astrocytes of horses with acute paralysis.
Veterinary pathology    January 1, 1997   Volume 34, Issue 1 52-54 doi: 10.1177/030098589703400110
Schultheiss PC, Collins JK, Hotaling SF.Equine herpesvirus-1 (EHV-1) infection in a few widely scattered neurons and astrocytes plus endothelial cells in brain and spinal cord of two horses with naturally occurring paralytic disease was demonstrated by use of an immunoperoxidase technique. These horses were euthanatized less than 48 hours after the onset of clinical signs. No staining for EHV-1 was demonstrated in brain or spinal cord of three horses that had a longer duration of clinical disease or in two uninfected horses.
Brainstem auditory evoked potentials in horses and ponies.
Veterinary journal (London, England : 1997)    January 1, 1997   Volume 153, Issue 1 107-113 doi: 10.1016/s1090-0233(97)80015-9
Mayhew IG, Washbourne JR.Brainstem auditory evoked potentials (BAEPs) were recorded from 27 ponies. The peak and inter-peak (IP) latencies, V:I ratios and dispersal values were determined and the results from each category were compared with each other and with the authors' Thoroughbred BAEP data. Peak latencies were faster for ponies. The V:I ratios and dispersal values had similar characteristics in horses and ponies. In ponies there was a strong trend for IP latencies to be positively correlated with height, inter-aural distance and age. A positive relationship between I-V IP latency and inter-aural distance was co...
[Immunopathology of Borna disease in the horse: clinical, virological and neuropathologic findings].
Tierarztliche Praxis    December 1, 1996   Volume 24, Issue 6 567-576 
Bilzer T, Grabner A, Stitz L.Tissues from nine horses and one donkey suffering from natural Borna disease were investigated. Clinically, all animals demonstrated progressive reduced mentation and aggravating gait disturbances. During the clinical course anorexia and progressive loss of proprioception were observed. Cranial nerve failure was accompanied by signs of pharyngeal paralysis, sialorrhea, bruxism, and by blindness. Virologically, infectious virus was detected in the brain of all animals investigated but was not found regularly in all areas of the brain. However, in all cases, infectivity was found in the thalamus...
Intracranial hematoma in experienced teenage equestrians.
Pediatric neurology    October 1, 1996   Volume 15, Issue 3 235-236 doi: 10.1016/s0887-8994(96)00162-2
McAbee GN, Ciminera PF.Intracranial hematoma in pediatric equestrians is rare, notwithstanding the lack of uniform standards and requirements for the use of protective headgear during equestrian events. We report two teenage helmeted equestrians who sustained severe head trauma with intracranial hematoma due to falls during equestrian events. Current recommendations for the use of equestrian headgear are reviewed.
Clinical presentation of experimentally induced rabies in horses.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    July 1, 1996   Volume 43, Issue 5 277-285 doi: 10.1111/j.1439-0450.1996.tb00315.x
Hudson LC, Weinstock D, Jordan T, Bold-Fletcher NO.Twelve naive and nine test-vaccinated horses which developed clinical signs of rabies as a result of the required protocol of a vaccine trial were prospectively observed. Nineteen of the 21 cases were confirmed positive for rabies infection of the brain by fluorescent antibody test. The two horses with negative results had ganglioneuritis of the trigeminal ganglion or lymphocytic perivascular cuffing in the brain stem in addition to clinical signs. Average incubation period was 12.3 days and average morbidity was 5.5 days. Naive animals had significantly shorter incubation and morbidity period...
Horseback-riding-associated traumatic brain injuries–Oklahoma, 1992-1994. From the Centers for Disease Control and Prevention.
JAMA    April 10, 1996   Volume 275, Issue 14 1072 
No abstract available
Immunohistochemical diagnosis of eastern equine encephalomyelitis. Patterson JS, Maes RK, Mullaney TP, Benson CL.An immunohistochemical (IHC) assay was developed for the detection of eastern equine encephalomyelitis (EEE) virus antigen in formalin-fixed, paraffin-embedded tissues. All cases of EEE diagnosed at the Michigan State University Animal Health Diagnostic Laboratory from 1991 through 1994 were evaluated. The diagnosis was based on histopathologic examination of the brain and confirmatory virus, isolation. Sections of cerebrum from 26 equids and 5 birds were assessed by IHC. Histologically normal brain tissues from 2 horses and 1 pheasant and brain tissues from 2 cases of equine neurologic diseas...
Horseback-riding-associated traumatic brain injuries–Oklahoma, 1992-1994.
MMWR. Morbidity and mortality weekly report    March 15, 1996   Volume 45, Issue 10 209-211 
Each year, traumatic brain injury (TBI) is associated with 52,000 deaths and accounts for one third of all injury deaths in the United States; in addition approximately 80,000 persons who survive TBI incur some loss of function, residual disability, and increased medical-care needs because of these injuries. Major causes of TBI are motor-vehicle crashes, falls, assaults, and sports and recreational activities. During 1992-1993 in Oklahoma, horseback riding was the leading cause of sports-related TBI. To further characterize horseback-riding-associated TBIs, the Oklahoma State Department of Hea...
Sudden unexpected death in a horse due to a cerebral oligodendroglioma.
Equine veterinary journal    March 1, 1996   Volume 28, Issue 2 163-165 doi: 10.1111/j.2042-3306.1996.tb01610.x
Reppas GP, Harper CG.No abstract available
The gyrification of mammalian cerebral cortex: quantitative evidence of anisomorphic surface expansion during phylogenetic and ontogenetic development.
Journal of anatomy    February 1, 1996   Volume 188 ( Pt 1), Issue Pt 1 53-58 
Mayhew TM, Mwamengele GL, Dantzer V, Williams S.Describing the shapes of 3D objects has proved to be as problematical in biology as in other areas. In an attempt to tackle this problem, established stereological methods (the Cavalieri principle and vertical sectioning) have been used to estimate a 3D shape-dependent quantity which can detect anisomorphic changes and is related to the degree of cortical convolution or gyrification. This isomophy factor is employed to assess phylogenetic and ontogenetic changes in the mammalian cerebral cortex. Gross anatomical differences between cerebral hemispheres of adult domestic mammals (horses, oxen, ...
Do horses gallop in their sleep? Consciousness, evolution, and the problem of animal minds.
James Arthur lecture on the evolution of the human brain    January 1, 1996   Volume 66 1-23 
Cartmill M.No abstract available
Spontaneous vascular mineralization in the brain of horses.
The Journal of veterinary medical science    January 1, 1996   Volume 58, Issue 1 35-40 doi: 10.1292/jvms.58.35
Yanai T, Masegi T, Ishikawa K, Sakai H, Iwasaki T, Moritomo Y, Goto N.Cerebral vascular mineralization was found in 12 (60%) of 20 3- to 10-year-old healthy horses collected at an abattoir. It was variable in degree and occurred mostly in the pallidal arteries showing two types of lesions; small globoid bodies along capillaries, and amorphous deposits in the wall of arterioles, small- or medium-sized arteries and veins. Both types were strongly positive for periodic acid-Schiff reaction, and weakly positive for von Kossa's and Berlin blue stains. Elemental analysis of the deposit revealed the presence of large amounts of aluminum, moderate amounts of phosphorus,...
Dense microspheres in normal horse brain.
Acta neuropathologica    January 1, 1996   Volume 91, Issue 4 440-443 doi: 10.1007/s004010050449
Furuoka H, Yamada M, Miyazawa K, Taniyama H, Matsui T.Here were report eosinophilic globular bodies referred to as dense microspheres (DMS), in the brains of normal horse in relation to the ageing process. The characteristic structures of DMS found in the horse were in similar to those previously reported in the human. The DMS were found predominantly in the neuropil of the cerebral cortex, and were shown histochemically to have a proteinaceous content. Electron microscopy showed that the DMS consisted of homogeneous electron-dense material bound by a single membrane and that they were found within the neuronal processes. In addition, immature or...
Equine papillary ependymoma.
Veterinary pathology    January 1, 1996   Volume 33, Issue 1 77-80 doi: 10.1177/030098589603300109
Carrigan MJ, Higgins RJ, Carlson GP, Naydan DK.A 17-year-old Arabian gelding with progressive neurologic signs had a velvety, reddish brain tumor protruding from the ventral midline caudal to the optic chiasma. Histologically, the tumor had a papillary formation with a single layer of elongate cells radially oriented around a central fibrovascular core. Intracytoplasmic globular inclusions were positive for glial fibrillary acidic protein and weakly positive for vimentin. Ultrastructurally, these inclusions were comprised of whorling intermediate filaments. Neoplastic cells also had cytoplasmic interdigitations and numerous zona adherens a...
Leukoencephalomalacia and hemorrhage in the brain of rabbits gavaged with mycotoxin fumonisin B1.
Natural toxins    January 1, 1996   Volume 4, Issue 1 51-52 doi: 10.1002/19960401nt7
Bucci TJ, Hansen DK, LaBorde JB.Two of five pregnant rabbits gavaged with purified fumonisin B1 at 1.75 mg/kg/day died, one after 9 and one after 13 doses. Microscopic examination revealed focal small hemorrhages in cerebral white matter in both animals, with malacia and hemorrhage also present in the hippocampus of one. The lesions were bilateral. Both animals also had marked degeneration of renal tubule epithelium and of hepatocytes. Apoptosis was the dominant degenerative change in kidney and liver. Fumonisin is known to cause leukoencephalomalacia and hemorrhage in equines, but CNS changes associated with exposure to fum...
Invited editorial on “Selective brain cooling in the horse during exercise and environmental heat stress”.
Journal of applied physiology (Bethesda, Md. : 1985)    December 1, 1995   Volume 79, Issue 6 1847-1848 doi: 10.1152/jappl.1995.79.6.1847
Baker MA.No abstract available
Selective brain cooling in the horse during exercise and environmental heat stress.
Journal of applied physiology (Bethesda, Md. : 1985)    December 1, 1995   Volume 79, Issue 6 1849-1854 doi: 10.1152/jappl.1995.79.6.1849
McConaghy FF, Hales JR, Rose RJ, Hodgson DR.Five horses were exercised on a treadmill [to central blood temperature (Tcore) approximately 42.5 degrees C]. Three of those horses were heated at rest in a climate room (53 degrees C, 90% relative humidity) (to Tcore approximately 41.5 degrees C). Temperatures were measured in the rectum, hypothalamus (Thyp), cerebrum, and cavernous sinus (Tsinus), on the skin of the head and midside, and Tcore. When Tcore increased above 38.5 degrees C, Thyp remained 0.6 +/- 0.1 degree C (SE) lower during heat exposure and 1 +/- 0.2 degrees C lower during exercise. During heat exposure, Tsinus was 2.2 +/- 0...
[Adenosine deaminase activity in blood and tissues of horses of the Rassen Haflinger and Thüringer Kaltblut breeds].
DTW. Deutsche tierarztliche Wochenschrift    October 1, 1995   Volume 102, Issue 10 405-407 
Leo M, Kolb E, Siebert P, Dittrich H.The activity of adenosine deaminase in the cerebrum, cerebellum, brain stem, heart, skeletal muscle, lung, liver, spleen, kidney and testes of horses of the breeds Haflinger and Thüringer Kaltblut was not different from each other. In the erythrocytes and the plasma no activity of the ADA exists.
Detection of immunoreactive atrial and brain natriuretic peptides in the equine atrium.
Anatomy and embryology    August 1, 1995   Volume 192, Issue 2 117-121 doi: 10.1007/BF00186000
Mifune H, Richter R, Forssmann WG.The distribution of immunoreactivity (IR) for cardiodilatin/atrial natriuretic peptide (CDD/ANP) and brain natriuretic peptide (BNP) was examined immunohistochemically and immuno-electron-microscopically in the equine atrium, using specific antibodies. In the immunohistochemical studies, IR-CDD/ANP and IR-pBNP-26 (porcine BNP-26 immunoreactivity) was detected in the cytoplasm of the auricular cardiocytes, but IR-hBNP-32 (human BNP-32 immunoreactivity) was not. The double immunogold labelling method for IR-hBNP-28 and IR-pBNP-26 revealed that gold particles of different sizes were located in th...
Presence of CD4+ and CD8+ T cells and expression of MHC class I and MHC class II antigen in horses with Borna disease virus-induced encephalitis.
Brain pathology (Zurich, Switzerland)    July 1, 1995   Volume 5, Issue 3 223-230 doi: 10.1111/j.1750-3639.1995.tb00598.x
Bilzer T, Planz O, Lipkin WI, Stitz L.Tissues from 9 horses and 1 donkey suffering from natural Borna disease were investigated immunomorphologically. Lymphocytic inflammatory reactions and increased expressions of MHC class I and class II antigen were found in the brain as well as in the trigeminal and olfactory system. Perivascular inflammatory infiltrates were dominated by CD4+ T cells, whereas the majority of CD8+ T cells were disseminated intraparenchymally. No evidence of inflammation was found in the retina. Borna disease virus proteins and nucleic acids were present in the hippocampus, thalamus and medulla oblongata in all...
Quantitative electroencephalographic evaluation to determine the quality of analgesia during anesthesia of horses for arthroscopic surgery.
American journal of veterinary research    March 1, 1995   Volume 56, Issue 3 374-379 
Miller SM, Short CE, Ekström PM.We compared the anesthetic combination of detomidine, ketamine, and halothane in control horses not undergoing apparently painful procedures with that in horses during arthroscopic surgery. The effectiveness of this regimen in suppressing neurologic response to surgery was, thus, evaluated. In this study, significant differences were not observed in electroencephalographic total amplitude, spectral edge, or beta-to-delta frequency ratio between surgically treated and nonsurgically treated (control) horses. On the basis of its attenuation of encephalographic responses, we conclude that detomidi...
Borna disease–neuropathology and pathogenesis.
Current topics in microbiology and immunology    January 1, 1995   Volume 190 39-73 
Gosztonyi G, Ludwig H.Natural BD is a nonpurulent acute/subacute encephalitis of horses and sheep with a propensity to involve the olfactory and limbic systems, and the brain stem. The inflammation is concentrated primarily in the gray matter, but subcortical white matter may also be affected. Experimental BD can be produced in a series of animals from birds to primates. The neuropathology after experimental infection is similar to that in natural disease but the inflammatory changes are more diffuse. In the rat and mouse, a persistent/tolerant infection can also be induced, in which inflammatory changes are conspi...
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