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Topic:Electroencephalography

Electroencephalography (EEG) in horses is a non-invasive technique used to measure electrical activity in the brain. This method involves placing electrodes on the scalp to detect neural oscillations, providing insights into brain function and neurological health. EEG is utilized in equine research to study brain activity during various states such as sleep, anesthesia, and seizure disorders. It can also aid in understanding behavioral responses and cognitive processes in horses. This page compiles peer-reviewed research studies and scholarly articles that explore the application, methodology, and implications of electroencephalography in equine neurological assessments.
Electroencephalographic power spectrum analysis as a monitor of anesthetic depth in horses.
Veterinary surgery : VS    September 1, 1991   Volume 20, Issue 5 362-371 doi: 10.1111/j.1532-950x.1991.tb01284.x
Otto K, Short CE.Electroencephalographic (EEG) power spectrum analysis was performed in 18 conscious, adult horses for evaluation as control values for EEG data obtained during anesthesia. Computer-processed total amplitudes for the frequency range 0 to 32 Hz were mainly between 400 and 600 microV, with 80% spectral edge frequency between 16.6 and 32.5 Hz. The highest electrical activity was in the delta band (41.3 +/- 4.4% of total amplitude); there was a less pronounced activity in the beta (34.2 +/- 5.2%), theta (13.6 +/- 1.5%), and alpha (10.0 +/- 1.0%) bands. The applicability of EEG power spectrum analys...
Indication and use of electrodiagnostic aids in neurologic disease.
The Veterinary clinics of North America. Equine practice    August 1, 1987   Volume 3, Issue 2 293-322 doi: 10.1016/s0749-0739(17)30674-0
Andrews FM, Fenner WR.Electrodiagnostic aids, electromyography, auditory brainstem response testing, and electroencephalography are extensions of the neurologic examination and provide valuable information about the nervous system. This article discusses the use and interpretation of electrodiagnostic aids in equine neurology as well as the equipment that is employed. It is hoped that with a better understanding of the available electrodiagnostic aids, they will come into greater use.
Electroencephalographic patterns of clinically normal, sedated, and tranquilized newborn foals and adult horses.
American journal of veterinary research    January 1, 1985   Volume 46, Issue 1 36-41 
Mysinger PW, Redding RW, Vaughan JT, Purohit RC, Holladay JA.To establish a clinically practical procedure for recording the equine EEG, 25 healthy adult horses and 6 newborn foals were used. Recordings were taken with the animals alert and tranquilized, confined in metal stocks, or physically restrained. The dominant alert waveforms of adult horses were fast activity (25 to 40 Hz) with medium-to-low voltages (5 to 40 microV-dominant 10 to 15 microV). Underlying this fast activity was slower (0.5 to 4.0 Hz) activity with medium-to-low voltages (10 to 40 microV). Twelve of the 25 adult horses had EEG frequencies in the alpha frequency range (10 to 15 Hz,...
Effects of xylazine and ketamine hydrochloride on the electroencephalogram and the electrocardiogram in the horse.
American journal of veterinary research    April 1, 1981   Volume 42, Issue 4 615-619 
Purohit RC, Mysinger PW, Redding RW.A continuous series of electroencephalograms (EEG) was obtained from each of 6 mature horses which had been given xylazine and ketamine hydrochloride IV. Electrocardiograms and respiratory rates were also obtained. The EEG of the unsedated standing adult horse displayed a dominant fast activity in the range of 25-35 Hz, 5-30 microV superimposed over slower 1-4 Hz, 10-50 microV activity with occasional 10-14 Hz, 10-40 microV spindle-type activity. The xylazine-sedated horse displayed hypersynchronous EEG patterns, with the dominant activity being 1-3 Hz, 10-70 microV with overlying mixed freque...
Sleep and wakefulness in the housed pony under different dietary conditions.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1974   Volume 38, Issue 1 65-71 
Dallaire A, Rucklebusch Y.For several weeks, three ponies kept in an environment with controlled light and temperature, were studied for behaviour (time spent in recumbency and time required to consume hay or oats) and for electrical activity of the brain (cortical and sub-cortical) during the night phase of the circadian rhythm. Recumbency was adopted by all the ponies for six or seven periods during the night. With a regimen of hay ad libitum, about four hours were cumulated in sternal recumbency and only one hour in complete lateral recumbency. Various degree of sleep, as identified by cortical and hippocampal elect...
Electrodes for recording cortical electroencephalograms in ponies.
Laboratory animal science    April 1, 1972   Volume 22, Issue 2 262-265 
Garner HE, Amend JF, Rosborough JP, Geddes LA, Ross JN.No abstract available
Electroencephalographic recordings with multicontact depth probes in a horse.
American journal of veterinary research    July 1, 1969   Volume 30, Issue 7 1239-1243 
Grabow JD, Anslow RO, Spalatin J.No abstract available