Analyze Diet

Topic:Electrophysiology

Electrophysiology in horses involves the study of the electrical properties and activities of equine tissues, particularly the heart and nervous system. This field encompasses the measurement and analysis of electrical signals to assess the function and health of these systems. In equine cardiology, electrophysiological studies are utilized to evaluate cardiac rhythm, detect arrhythmias, and guide therapeutic interventions. In the context of the nervous system, electrophysiological techniques can help in diagnosing neurological disorders and assessing nerve function. This page compiles peer-reviewed research studies and scholarly articles that explore the methodologies, applications, and clinical relevance of electrophysiology in the assessment and management of equine health.
Cortical somatosensory-evoked potentials in the horse.
American journal of veterinary research    November 1, 1988   Volume 49, Issue 11 1869-1872 
Strain GM, Taylor DS, Graham MC, Kamerling SG.Cortical somatosensory-evoked potentials (SEP) were recorded from thoracic and pelvic limbs in 15 horses (13 Thoroughbreds and 2 Quarter Horses). Ulnar nerve SEP were evoked by electrical stimulation of the lateral palmar branch of the ulnar nerve at the level of the metacarpophalangeal joint. Recordings were taken between electrodes at 2 cm lateral to the vertex (contralateral to the stimulated limb) and the midpoint of the interorbital line. Four peaks were found in all recordings: N1, P1, N2, and P2. Latencies to the peaks were 39.0 +/- 2.7, 45.5 +/- 5.3, 50.4 +/- 5.2, and 62.3 +/- 3.7 ms (...
Species differences in the changes in heart rate and T-wave amplitude after autonomic blockade in Thoroughbred horses, ponies, cows, pigs, goats and chickens.
Nihon juigaku zasshi. The Japanese journal of veterinary science    August 1, 1987   Volume 49, Issue 4 637-644 doi: 10.1292/jvms1939.49.637
Matsui K, Sugano S.No abstract available
Beat-to-beat variability in QRS potentials recorded with an orthogonal lead system in horses with second degree partial A-V block.
Research in veterinary science    November 1, 1984   Volume 37, Issue 3 334-338 
Miller PJ, Holmes JR.Beat-to-beat variation in the amplitude of the QRS waveform from 13 horses with second degree partial atrioventricular block was examined using an orthogonal lead (X,Y,Z) system. The peak positive deflections (XR, YR and ZR) and peak negative deflections (XQS, YS and ZQ) were regressed against PR and RR intervals. XQS was used to indicate that the peak negative deflection in X could have been a Q or S wave. XR and YR were directly related to PR (P less than 0.001) and XQS and YS were inversely related to PR (P less than 0.001). YR was also directly related to RR (P less than 0.001) but not so ...
[Determination of the focus of ventricular extrasystole in the horse].
Schweizer Archiv fur Tierheilkunde    April 1, 1984   Volume 126, Issue 4 165-172 
Pfister R, Seifert-Alioth C, Beglinger R.No abstract available
Energy and current requirements for ventricular defibrillation using trapezoidal waves.
The American journal of physiology    February 1, 1980   Volume 238, Issue 2 H231-H236 doi: 10.1152/ajpheart.1980.238.2.H231
Geddes LA, Bourland JD, Tacker WA.The threshold energy and current required for ventricular defibrillation was determined in dogs ranging in weight from 6.4 to 38 kg and in ponies ranging in weight from 40 to 101 kg. Trapezoidal waves, 10 ms in duration, with 10%, 50%, 70%, and 90% tilt were applied to transchest electrodes. For all values of tilt, the energy and current required increased with body weight. The energy dose (joules per kilogram of body weight) was higher for the heavier animals, whereas the current dose (peak amperes per kilogram of body weight) was essentially the same for dogs and ponies. In both species and ...
Morphometric and electrophysiologic study of the photoreceptors in the horse. François J, Wouters L, Victoria-Troncoso V, de Rouck A, van Gerven A.No abstract available
A non-phosphate-buffered physiological saline for in vitro electrophysiological studies on the mammalian neuromuscular junction [proceedings].
The Journal of physiology    May 1, 1978   Volume 278 8P-9P 
Rees D.No abstract available
Spatial vector changes during ventricular depolarisation using a semi-orthogonal lead system–a study of 190 cases.
Equine veterinary journal    January 1, 1976   Volume 8, Issue 1 1-16 doi: 10.1111/j.2042-3306.1976.tb03275.x
Holmes JR.The paper describes the spatial vector changes during ventricular depolarisation in 190 horses using a semi-orthogonal ECG lead system. The replacement of planar vector loops by a plot of 3 parameters to depict the changing spatial vector, with a time base on the X axis, is described and illustrated. Some horses with diastolic murmurs and some with a history of respiratory problems formed 2 distinct groups. As a result of these findings a possible relationship between the vector changes and the anatomical siting of the ventricles is suggested and discussed. Attention is drawn to certain measur...
Studies on the equine cardiac electric field. I. Body surface potentials.
Journal of electrocardiology    July 1, 1969   Volume 2, Issue 3 229-234 doi: 10.1016/s0022-0736(69)80082-8
Darke PG, Holmes JR.The paper describes the distribution of cardiac potentials on the body surface of four horses. Potentials were recorded at 200 to 300 equallyspaced sites synchronously with a reference lead; they were measured at 10 msec. instants of time, and were plotted on diagrams. While some evidence of multiple dipolar activity occurred during each part of the cardiac cycle, the majority of potentials arose as if from a single resultant dipole.
[Endoelectrograms of horses].
Archives des maladies du coeur et des vaisseaux    November 1, 1958   Volume 51, Issue 11 1061-1076 
PINES I.No abstract available