Analyze Diet

Topic:Neurological Diseases

Neurological diseases in horses encompass a range of disorders affecting the central and peripheral nervous systems. These conditions can arise from various etiologies, including infectious agents, genetic predispositions, trauma, or metabolic imbalances. Common neurological diseases in horses include equine protozoal myeloencephalitis (EPM), equine herpesvirus myeloencephalopathy (EHM), and cervical vertebral stenotic myelopathy (CVSM), also known as wobbler syndrome. Clinical signs associated with these diseases may include ataxia, weakness, altered gait, and changes in behavior or mental status. Diagnosis typically involves a combination of clinical evaluation, imaging techniques, and laboratory testing. This page compiles peer-reviewed research studies and scholarly articles that investigate the pathophysiology, diagnostic approaches, and treatment options for neurological diseases in equine populations.
Neuromuscular disease associated with glycogen storage in a Spanish-bred filly.
The Veterinary record    April 18, 2006   Volume 158, Issue 15 513-516 doi: 10.1136/vr.158.15.513
Gil F, Alemán M, Rivero MA, Latorre R, Carrión MA, Aguirre C, Ruíz I, Ayala I.No abstract available
Development and evaluation of a Sarcocystis neurona-specific IgM capture enzyme-linked immunosorbent assay.
Journal of veterinary internal medicine    April 6, 2006   Volume 20, Issue 2 322-328 doi: 10.1892/0891-6640(2006)20[322:daeoas]2.0.co;2
Murphy JE, Marsh AE, Reed SM, Meadows C, Bolten K, Saville WJ.Equine protozoal myeloencephalitis (EPM) is a serious neurologic disease of horses caused primarily by the protozoal parasite Sarcocystis neurona. Currently available antemortem diagnostic testing has low specificity. The hypothesis of this study was that serum and cerebrospinal fluid (CSF) of horses experimentally challenged with S neurona would have an increased S neurona-specific IgM (Sn-IgM) concentration after infection, as determined by an IgM capture enzyme linked immunoassay (ELISA). The ELISA was based on the S neurona low molecular weight protein SNUCD-1 antigen and the monoclonal an...
Analysis of equid herpesvirus 1 strain variation reveals a point mutation of the DNA polymerase strongly associated with neuropathogenic versus nonneuropathogenic disease outbreaks.
Journal of virology    March 31, 2006   Volume 80, Issue 8 4047-4060 doi: 10.1128/JVI.80.8.4047-4060.2006
Nugent J, Birch-Machin I, Smith KC, Mumford JA, Swann Z, Newton JR, Bowden RJ, Allen GP, Davis-Poynter N.Equid herpesvirus 1 (EHV-1) can cause a wide spectrum of diseases ranging from inapparent respiratory infection to the induction of abortion and, in extreme cases, neurological disease resulting in paralysis and ultimately death. It has been suggested that distinct strains of EHV-1 that differ in pathogenic capacity circulate in the field. In order to investigate this hypothesis, it was necessary to identify genetic markers that allow subgroups of related strains to be identified. We have determined all of the genetic differences between a neuropathogenic strain (Ab4) and a nonneuropathogenic ...
Initial clinical impressions of the U.C. Davis large animal lift and its use in recumbent equine patients.
Schweizer Archiv fur Tierheilkunde    March 28, 2006   Volume 148, Issue 3 161-166 doi: 10.1024/0036-7281.148.3.161
Pusterla N, Madigan JE.The U.C. Davis Large Animal Lift (LAL) is a lightweight sling developed to help lift horses in clinical and rescue situations. Here we report on its first use in 16 recumbent horses with neurologic, muscular and musculoskeletal disorders. For each horse, history, sedation, ease and time of LAL application and hoisting, standing ability, LAL tolerance and outcome were recorded. The LAL was easily and safely applied in all horses in less than five minutes and the procedure was well tolerated with minimal to no sedation. While 10 horses were able to stand in the LAL after being hoisted, 6 horses ...
Immune response to Sarcocystis neurona infection in naturally infected horses with equine protozoal myeloencephalitis.
Veterinary parasitology    March 23, 2006   Volume 138, Issue 3-4 200-210 doi: 10.1016/j.vetpar.2006.02.007
Yang J, Ellison S, Gogal R, Norton H, Lindsay DS, Andrews F, Ward D, Witonsky S.Equine protozoal myeloencephalitis (EPM) is one of the most common neurologic diseases of horses in the United States. The primary etiologic agent is Sarcocystis neurona. Currently, there is limited knowledge regarding the protective or pathophysiologic immune response to S. neurona infection or the subsequent development of EPM. The objectives of this study were to determine whether S. neurona infected horses with clinical signs of EPM had altered or suppressed immune responses compared to neurologically normal horses and if blood sample storage would influence these findings. Twenty clinical...
Cerebral listeriosis in an adult Freiberger gelding.
Journal of comparative pathology    March 20, 2006   Volume 134, Issue 2-3 249-253 doi: 10.1016/j.jcpa.2005.09.007
Rütten M, Lehner A, Pospischil A, Sydler T.Listeria monocytogenes infection, although rare in horses, can lead to septicaemia, gastroenteritis and abortion or stillborn foals. Equine cerebral listeriosis has been reported, but only in newborn animals. This report describes a Freiberger gelding with severe neuronal symptoms of sudden onset. The animal collapsed within 24 h and was humanely killed. Necropsy revealed multiple small brown to reddish foci within the brain stem and pons. Histopathology demonstrated multifocal suppurative meningoencephalitis with microabscesses and occasional intra-lesional, coccoid to rod-shaped, bacteria. T...
Increased presence of T lymphocytes in central nervous system of EPM affected horses.
The Journal of parasitology    March 17, 2006   Volume 91, Issue 6 1499-1502 doi: 10.1645/GE-519R.1
Scott P, Witonsky S, Robertson J, Daft B.Equine protozoal myeloencephalitis (EPM), caused by Sarcocystis neurona infection in the central nervous system (CNS), affects up to 1% of all horses during their lifetimes. Neither the protective immune response nor the immunopathology associated with the disease is well understood. To begin to clarify the pathogenesis of the disease, immunohistochemical staining for B and T lymphocytes was performed on spinal cord sections obtained from 17 horses, all of which were all positive for S. neurona based on immunohistochemical staining. Fifteen of the 17 horses included in the study were killed du...
Investigation of equine influenza cases exhibiting neurological disease: coincidence or association?
Journal of comparative pathology    March 9, 2006   Volume 134, Issue 2-3 231-235 doi: 10.1016/j.jcpa.2005.09.001
Daly JM, Whitwell KE, Miller J, Dowd G, Cardwell JM, Smith KC.Equine influenza is usually a transient and self-limiting disease. However, during an outbreak of equine influenza in the UK in 2003 there were reports of unusually severe clinical signs among unvaccinated animals. Two influenza-infected horses developed neurological signs, and one was subjected to euthanasia. Post-mortem examination of the brain revealed viral-type non-suppurative encephalitis, and influenza virus antigen was demonstrated by immunolabelling of sections of nasal mucosa. A syndrome known as influenza-associated encephalopathy has been described in man. Although not proved, the ...
Penetration of equine leukocytes by merozoites of Sarcocystis neurona.
Veterinary parasitology    March 6, 2006   Volume 138, Issue 3-4 371-376 doi: 10.1016/j.vetpar.2006.01.057
Lindsay DS, Mitchell SM, Yang J, Dubey JP, Gogal RM, Witonsky SG.Horses are considered accidental hosts for Sarcocystis neurona and they often develop severe neurological disease when infected with this parasite. Schizont stages develop in the central nervous system (CNS) and cause the neurological lesions associated with equine protozoal myeloencephalitis. The present study was done to examine the ability of S. neurona merozoites to penetrate and develop in equine peripheral blood leukocytes. These infected host cells might serve as a possible transport mechanism into the CNS. S. neurona merozoites penetrated equine leukocytes within 5 min of co-culture. I...
[Halicephalobus gingivalis infection in a 5-year-old Tinker gelding].
Tijdschrift voor diergeneeskunde    March 1, 2006   Volume 131, Issue 3 74-80 
Boswinkel M, Neyens IJ, Sloet van Oldruitenborgh-Oosterbaan MM.A 5-year old Tinker gelding was referred to the Department of Equine Sciences with a left eye uveitis and fever. At presentation the horse showed a mild lethargy, fever and decreased vision of the left eye. Rectal examination revealed an enlarged left kidney, with a hard and an irregular surface. The cranial mesentery artery had an enlarged and irregular aspect. Blood analysis showed anaemia, leucocytosis, increased blood urea nitrogen and creatinine and a hyperproteinemia. Urine analysis repeatedly showed a marked proteinuria and an increased gammaGT/creatinine ratio. The amount of abdominal ...
Primary alimentary lymphoma with metastasis to the liver causing encephalopathy in a horse.
Journal of veterinary internal medicine    February 25, 2006   Volume 20, Issue 1 204-206 doi: 10.1892/0891-6640(2006)20[204:palwmt]2.0.co;2
Schnabel LV, Njaa BL, Gold JR, Meseck EK.No abstract available
Intracranial abscess caused by Rhodococcus equi infection in a foal.
Journal of the American Veterinary Medical Association    January 24, 2006   Volume 228, Issue 2 251-253 doi: 10.2460/javma.228.2.251
Janicek JC, Kramer J, Coates JR, Lattimer JC, Lacarrubba AM, Messer NT.A 4-month-old Missouri Fox Trotter colt was examined for a 5-week history of head tilt after treatment for suspected pulmonary Rhodococcus equi infection. Results: Computed tomography revealed osteolysis of the occipital, temporal, and caudal portion of the parietal bones of the left side of the cranium. A soft tissue mass compressing the occipital region of the cerebral cortex and cerebellum was associated with the osteolytic bone. Results: A rostrotentorial-suboccipital craniectomy approach was performed to remove fragmented occipital bone, debulk the intracranial mass, and obtain tissue sam...
Central nervous system hemangiosarcoma in a horse.
Journal of veterinary internal medicine    December 17, 2005   Volume 19, Issue 6 914-916 doi: 10.1892/0891-6640(2005)19[914:cnshia]2.0.co;2
Ladd SM, Crisman MV, Duncan R, Rossmeisl J, Almy FS.No abstract available
Traumatic cerebral partial lobotomy in a Thoroughbred stallion.
Australian veterinary journal    December 1, 2005   Volume 83, Issue 11 674-677 doi: 10.1111/j.1751-0813.2005.tb13045.x
Rayner SG.No abstract available
Role of transcranial magnetic stimulation in differentiating motor nervous tract disorders from other causes of recumbency in four horses and one donkey.
The Veterinary record    November 22, 2005   Volume 157, Issue 21 656-658 doi: 10.1136/vr.157.21.656
Nollet H, Vanschandevijl K, Van Ham L, Vanderstraeten G, Deprez P.Transcranial magnetic stimulation and measurement of the magnetic motor-evoked potentials (MMEPs) in the thoracic and pelvic limbs of four recumbent horses and one recumbent donkey were used to assess the integrity of the descending motor pathways, in order to confirm or exclude a descending motor tract lesion as the cause of the recumbency. In two of the animals abnormal MMEPs were recorded; in one of the horses a lesion along the cervical spinal cord due to a fracture of the fifth cervical vertebra was diagnosed and confirmed by radiography and postmortem examination; in another horse, damag...
[Neurologic form of rhinopneumonia].
Tijdschrift voor diergeneeskunde    November 10, 2005   Volume 130, Issue 20 629-631 
Sloet van Oldruitenborgh-Oosterbaan M.No abstract available
Neurologic disorders of neonatal foals.
The Veterinary clinics of North America. Equine practice    July 30, 2005   Volume 21, Issue 2 387-vii doi: 10.1016/j.cveq.2005.04.006
MacKay RJ.Neurologic examination of the neonatal foal is quite different from the process used to examine older foals and adult horses. Abnormal neurologic signs are best appreciated in the context of a detailed knowledge of general neonatal medicine and awareness of nor-mal foal behavior and milestones of development. A systematic approach to neurologic examination is provided. The results of such examination are used to localize a lesion or lesions in the nervous system. Descriptions and treatment strategies are given for most common and important neonatal neurologic diseases.
Thoracolaryngeal reflex latencies in Thoroughbred horses with recurrent laryngeal neuropathy.
Veterinary journal (London, England : 1997)    July 5, 2005   Volume 170, Issue 1 67-76 doi: 10.1016/j.tvjl.2004.03.020
Curtis RA, Hahn CN, Evans DL, Williams T, Begg L.Electrolaryngeography was used to study the latencies of the thoracolaryngeal adductor reflex in Thoroughbred horses with and without recurrent laryngeal neuropathy (RLN). Latencies were compared in horses with grades 1 and 2 RLN, diagnosed by endoscopy in resting horses. The reliability of the measurements, effect of sedation and correlations of latencies with age of the horse were also studied. There was no effect of sedation on reflex latency periods. The latency of the reflex period measured to a convolved peak of the electromyographic response was significantly different in horses with gr...
Evidence to support horses as natural intermediate hosts for Sarcocystis neurona.
Veterinary parasitology    June 23, 2005   Volume 133, Issue 1 27-36 doi: 10.1016/j.vetpar.2005.05.016
Mullaney T, Murphy AJ, Kiupel M, Bell JA, Rossano MG, Mansfield LS.Opossums (Didelphis spp.) are the definitive host for the protozoan parasite Sarcocystis neurona, the causative agent of equine protozoal myeloencephalitis (EPM). Opossums shed sporocysts in feces that can be ingested by true intermediate hosts (cats, raccoons, skunks, armadillos and sea otters). Horses acquire the parasite by ingestion of feed or water contaminated by opossum feces. However, horses have been classified as aberrant intermediate hosts because the terminal asexual sarcocyst stage that is required for transmission to the definitive host has not been found in their tissues despite...
Neuronal intranuclear inclusion disease in a horse.
Acta neuropathologica    June 22, 2005   Volume 110, Issue 2 191-195 doi: 10.1007/s00401-005-1033-5
Pumarola M, Vidal E, Trens JM, Serafín A, Marquez M, Ferrer I.Neuronal intranuclear inclusion disease (NIID) is reported in a 16-year-old Pure Spanish breed female horse suffering from progressive ataxia and motor deficiencies. The neuropathological study revealed NIIs throughout the central nervous system, although mainly in the brain stem and spinal cord. This distribution did not correlate with neuron loss, which was marked in the hippocampus and moderate in the neocortex, particularly in the occipital cortex. As in humans, NIIs in the horse were hyaline autofluorescent inclusions composed of non-membrane-bound aggregates of filaments and fine granule...
Semilobar holoprosencephaly in a Morgan horse.
Journal of veterinary internal medicine    June 16, 2005   Volume 19, Issue 3 367-372 doi: 10.1892/0891-6640(2005)19[367:shiamh]2.0.co;2
Koch TG, Loretti AP, de Lahunta A, Kendall A, Russell D, Bienzle D.No abstract available
A new collagen biomatrix of equine origin versus a cadaveric dura graft for the repair of dural defects–a comparative animal experimental study.
Acta neurochirurgica    June 3, 2005   Volume 147, Issue 8 877-887 doi: 10.1007/s00701-005-0552-0
Knopp U, Christmann F, Reusche E, Sepehrnia A.Numerous types of materials have been evaluated over the past decades in the quest for the ideal dural replacement, but no product fully meets all the applicable criteria. This paper presents the long-term results of an animal trial of a collagen biomatrix (TISSUDURA, Baxter AG, Vienna/Austria) for the repair and regeneration of dural defects. This product provides a matrix with a special layer structure and consists of pure naturally cross-linked collagen of equine origin. The comparable material is Tutoplast Dura, a human cadaveric-derived dural graft preserved in a multiple stage chemical p...
Observations on the interstitial cells of Cajal and neurons in a recovered case of equine dysautonomia (grass sickness).
Journal of comparative pathology    May 21, 2005   Volume 133, Issue 1 33-40 doi: 10.1016/j.jcpa.2005.01.004
Milne EM, Fintl C, Hudson NP, Pearson GT, Mayhew IG, Hahn CN.This paper describes the histopathological and immunohistochemical changes in the central, autonomic and enteric nervous systems in a well-documented case of equine dysautonomia (ED), after the animal had recovered without significant residual clinical signs. Evidence of neuronal degeneration, such as neuronal chromatolysis, glial scars or a decrease in density of neurons, was not observed in the midbrain, pons, medulla oblongata or spinal cord, including the nuclei of cranial nerves III, V, VII, X and XII. In addition, no evidence of muscle denervation or re-innervation, such as group atrophy...
Post-anaesthetic myelomalacia in a horse.
Journal of the South African Veterinary Association    May 20, 2005   Volume 76, Issue 1 36-39 doi: 10.4102/jsava.v76i1.392
Jouber KE, Duncan N, Murray SE.This article describes a rare neurological complication of anaesthesia in a 2 year-old Clydesdale colt undergoing castration. Anaesthesia was induced with glyceryl guaiacol ether and ketamine and maintained with halothane. Following an uneventful anaesthetic of 40 minutes, the horse recovered from anaesthesia in a padded recovery stall. After approximately 70 minutes in the recovery stall, the horse attempted to stand and adopted a dog sitting position. One hundred and fifty minutes later, the horse became distressed and was sedated with xylazine. Clinical examination of the horse did not reve...
A novel, progressive, sclerosing panencephalitis in a horse.
Equine veterinary journal    May 17, 2005   Volume 37, Issue 3 276-280 doi: 10.2746/0425164054530623
Swain JM, Hudson NP, Rhind SM, Baird PM, Mayhew IG.No abstract available
Cytokine gene expression in response to SnSAG1 in horses with equine protozoal myeloencephalitis.
Clinical and diagnostic laboratory immunology    May 10, 2005   Volume 12, Issue 5 644-646 doi: 10.1128/CDLI.12.5.644-646.2005
Spencer JA, Deinnocentes P, Moyana EM, Guarino AJ, Ellison SE, Bird RC, Blagburn BL.Equine protozoal myeloencephalitis (EPM) is a neurologic syndrome seen in horses from the Americas and is mainly caused by Sarcocystis neurona. Recently, a 29-kDa surface antigen from S. neurona merozoites was identified as being highly immunodominant on a Western blot. This antigen has been sequenced and cloned, and the expressed protein has been named SnSAG1. In a previous study, cell-mediated immune responses to SnSAG1 were shown to be statistically significantly reduced in horses with EPM in comparison to EPM-negative control horses. It therefore appears as though the parasite is able to i...
Neurological syndromes among horses in The Netherlands. A 5 year retrospective survey (1999-2004).
The veterinary quarterly    April 20, 2005   Volume 27, Issue 1 11-20 doi: 10.1080/01652176.2005.9695182
Goehring LS, van Maanen C, Sloet van Oldruitenborgh-Oosterbaan MM.The presence of toxins or infectious agents combined with environmental factors in combination with a susceptible host can be the cause for neurological disease in groups of horses. During a 5 year observational period outbreaks of neurological diseases among horses were evaluated. Causes of occurring neurological diseases were equine botulism, lolitrem intoxications, equine herpesvirus type 1-associated myelo(encephalo)pathy, and encephalitis caused by (disseminated) Streptococcus equi subspecies equi infection. This article focuses on the first three syndromes because of their predominant in...
Nitration and increased alpha-synuclein expression associated with dopaminergic neurodegeneration in equine pituitary pars intermedia dysfunction.
Journal of neuroendocrinology    March 31, 2005   Volume 17, Issue 2 73-80 doi: 10.1111/j.1365-2826.2005.01277.x
McFarlane D, Dybdal N, Donaldson MT, Miller L, Cribb AE.Equine pituitary pars intermedia dysfunction (PPID) is a spontaneously occurring progressive disease affecting aged horses and ponies. The pathogenesis of PPID is poorly understood, but the available evidence supports a loss of dopaminergic inhibition of the melanotropes of the pars intermedia. Horses with PPID have increased plasma concentrations of pars intermedia pro-opiomelanocortin-derived peptides that decrease in response to dopamine or dopamine agonist administration. Dopamine and dopamine metabolite concentrations are decreased in the pars intermedia of affected horses compared to age...
Borna disease virus and mental health: a cross-sectional study.
QJM : monthly journal of the Association of Physicians    March 10, 2005   Volume 98, Issue 4 247-254 doi: 10.1093/qjmed/hci040
Thomas DR, Chalmers RM, Crook B, Stagg S, Thomas HV, Lewis G, Salmon RL, Caul EO, Morgan KL, Coleman TJ, Morgan-Capner P, Sillist M, Kench SM....Borna disease is an infectious neurological disease of horses, sheep and possibly other animals. A role for Borna disease virus (BDV) in human neurological and psychiatric illness has been proposed, but this hypothesis remains controversial. Objective: To investigate the epidemiology of BDV in UK farming communities. Methods: Retrospective cohort study. Methods: We measured the seroprevalence of BDV in the PHLS Farm Cohort, a representative sample of those employed in agriculture in the UK, and investigated the clinical significance of our findings by comparing the prevalence of symptoms of ne...
An equine protozoal myeloencephalitis challenge model testing a second transport after inoculation with Sarcocystis neurona sporocysts.
The Journal of parasitology    February 18, 2005   Volume 90, Issue 6 1406-1410 doi: 10.1645/GE-128R
Saville WJ, Sofaly CD, Reed SM, Dubey JP, Oglesbee MJ, Lacombe VA, Keene RO, Gugisberg KM, Swensen SW, Shipley RD, Chiang YW, Chu HJ, Ng T.Previous challenge studies performed at Ohio State University involved a transport-stress model where the study animals were dosed with Sarcocystis neurona sporocysts on the day of arrival. This study was to test a second transportation of horses after oral inoculation with S. neurona sporocysts. Horses were assigned randomly to groups: group 1, transported 4 days after inoculation (DAI); group 2, at 11 DAI; group 3, at 18 DAI; and group 4, horses were not transported a second time (controls). An overall neurologic score was determined on the basis of a standard numbering system used by veteri...
1 25 26 27 28 29 54