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Topic:Sedation

Sedation in horses involves the administration of pharmacological agents to induce a state of calmness, relaxation, or sleepiness. This practice is commonly employed to facilitate veterinary procedures, diagnostic imaging, or transportation by reducing stress and movement in the animal. The primary sedatives used in equine medicine include alpha-2 adrenergic agonists, such as xylazine and detomidine, and opioids, like butorphanol. These agents act on the central nervous system to achieve the desired sedative effects. The choice of sedative and its dosage depend on various factors, including the horse's age, weight, health status, and the procedure's nature. This page compiles peer-reviewed research studies and scholarly articles that explore the pharmacology, efficacy, and safety considerations of sedation in equine practice.
Cardiovascular effects of xylazine and detomidine in horses.
American journal of veterinary research    May 1, 1991   Volume 52, Issue 5 651-657 
Wagner AE, Muir WW, Hinchcliff KW.The cardiovascular effects of xylazine and detomidine in horses were studied. Six horses were given each of the following 5 treatments, at 1-week intervals: xylazine, 1.1 mg/kg, IV; xylazine, 2.2 mg/kg, IM; detomidine, 0.01 mg/kg, IV; detomidine, 0.02 mg/kg, IV; and detomidine, 0.04 mg/kg, IM. All treatments resulted in significantly decreased heart rate, increased incidence of atrioventricular block, and decreased cardiac output and cardiac index; cardiac output and cardiac index were lowest following IV administration of 0.02 mg of detomidine/kg. Mean arterial pressure was significantly redu...
Detomidine reduces the plasma catecholamine, but not cortisol concentrations in horses.
Zentralblatt fur Veterinarmedizin. Reihe A    April 1, 1991   Volume 38, Issue 3 153-156 doi: 10.1111/j.1439-0442.1991.tb00996.x
Raekallio M, Vainio O, Scheinin M.Single doses of the alpha 2-adrenergic sedative-analgesic drug, detomidine (10 micrograms/kg, n = 7; 20 micrograms/kg, n = 9), were administered IV to adult horses. Plasma concentrations of adrenaline, noradrenaline, the catecholamine metabolites 3,4-dihydroxyphenylglycol (DHPG) and 3,4-dihydroxyphenylacetic acid (DOPAC), and cortisol were determined before the medication and 30 minutes after it. The plasma concentrations of noradrenaline and the catecholamine metabolites decreased significantly after administration of both 10 micrograms/kg and 20 micrograms/kg of detomidine. Plasma adrenaline...
A comparison of techniques to enhance the evaluation of equine laryngeal function.
Equine veterinary journal    March 1, 1991   Volume 23, Issue 2 104-107 doi: 10.1111/j.2042-3306.1991.tb02731.x
Archer RM, Lindsay WA, Duncan ID.This study was designed to define a simple, unequivocal test for the evaluation of laryngeal function and the diagnosis of idiopathic laryngeal hemiplegia (ILH). ILH is a disorder that results from left recurrent laryngeal neuropathy and in which there is no movement of the left arytenoid cartilage and vocal fold. Laryngeal function was evaluated in seven horses using four techniques designed to stimulate laryngeal movements:-nasal occlusion, exercise, swallowing and administration of a respiratory stimulant. In addition, the effects of sedation and twitching on the endoscopic examination were...
Principles and techniques of equine anesthesia.
The Veterinary clinics of North America. Equine practice    December 1, 1990   Volume 6, Issue 3 485-781 
No abstract available
Intravenous anesthesia.
The Veterinary clinics of North America. Equine practice    December 1, 1990   Volume 6, Issue 3 513-528 doi: 10.1016/s0749-0739(17)30528-x
Benson GJ, Thurmon JC.Anticholinergics, tranquilizers, and sedative-hypnotics are the usual agents used for preanesthetic sedation of the horse. Of these drugs, the anticholinergics are of little importance in the horse. Acepromazine is the most useful and widely used tranquilizer, whereas xylazine is a safe and popular sedative. A newer sedative recently made available to the veterinarian for clinical use in horses is detomidine. Thiobarbiturates are seldom used alone any longer but are still useful when combined with guaifenesin for induction and maintenance of anesthesia. Other, more contemporary drug combinatio...
Use of halothane and isoflurane in the horse.
The Veterinary clinics of North America. Equine practice    December 1, 1990   Volume 6, Issue 3 529-541 doi: 10.1016/s0749-0739(17)30529-1
Brunson DB.When compared with halothane, isoflurane has several distinct characteristics. Vaporizer settings are higher because of its lower potency. Respiratory rates will be slower, and intraoperative changes in depth and recovery from surgical depth of anesthesia will be more rapid, although total recovery times frequently will not be different. Halothane and isoflurane appear similar in their effects on ocular reflexes and mean arterial blood pressure. Recovery from isoflurane should be managed to provide added sedation or physical support if the horse attempts to stand prematurely.
Chemical restraint and analgesia in the horse.
The Veterinary clinics of North America. Equine practice    December 1, 1990   Volume 6, Issue 3 495-512 doi: 10.1016/s0749-0739(17)30527-8
Geiser DR.Chemical restraint in the standing horse is used for a variety of procedures in veterinary medicine. The choice of agent depends on the physical status, temperament, and size of the patient; the procedure to be performed; and safety for the patient, veterinarian, and owner. The combination of certain agents may provide more desirable restraint and analgesia than does the use of individual agents. The use of analgesics in the horse is not without side effects, some of which may be detrimental to the patient's condition. Analgesics should be chosen with these untoward effects in mind. Draft bree...
Cardiopulmonary effects of epidurally administered xylazine in the horse.
Equine veterinary journal    November 1, 1990   Volume 22, Issue 6 389-391 doi: 10.1111/j.2042-3306.1990.tb04301.x
Leblanc PH, Eberhart SW.This study was designed to determine whether the epidural administration of an alpha2 agonist, xylazine, would produce measurable changes in arterial blood pressure, electrocardiographic (ECG) activity and arterial blood gas values in horses. Six horses were given each of four treatments: epidural xylazine, intravenous xylazine, epidural lidocaine and epidural saline. A carotid artery catheter was used to measure arterial blood pressure and to collect samples for blood gas analysis before treatment and at intervals post treatment. Heart rate, arterial pressures, ECG activity and respiratory ra...
A comparison of xylazine-diazepam-ketamine and xylazine-guaifenesin-ketamine in equine anesthesia.
Veterinary surgery : VS    November 1, 1990   Volume 19, Issue 6 468-474 doi: 10.1111/j.1532-950x.1990.tb01237.x
Brock N, Hildebrand SV.After sedation with xylazine (0.3 mg/kg intravenously [IV]), anesthesia was induced in six healthy horses with ketamine (2.0 mg/kg IV) and guaifenesin (100 mg/kg IV), diazepam (0.05 mg/kg IV), or diazepam (0.10 mg/kg IV). Anesthesia was maintained with halothane for 30 minutes. Heart rate, respiratory rate, direct arterial blood pressure, arterial blood gas, and pH measurements were made before, and at set intervals after, induction of anesthesia. Quality and characteristics of induction and recovery were evaluated objectively by an independent observer unaware of the protocol used. There were...
Cardiopulmonary effects of xylazine sedation in the foal.
Equine veterinary journal    November 1, 1990   Volume 22, Issue 6 384-388 doi: 10.1111/j.2042-3306.1990.tb04300.x
Carter SW, Robertson SA, Steel CJ, Jourdenais DA.Six healthy foals underwent instrumentation for measurement of the cardiopulmonary effects of sedation with 1.1 mg/kg bodyweight xylazine hydrochloride given intravenously. Responses to xylazine in foals at 10 and 28 days of age were not significantly different. Foals became sedate and markedly ataxic, and four of the six foals became recumbent. Heart rate decreased significantly but no arrhythmias were detected. Arterial blood pressure increased initially and then fell significantly below pre-injection values. Changes in respiratory airflow, upper airway obstruction and respiratory noise were...
[The immobilization of wild equines with STH 2130 and tiletamine/zolazepam].
Tierarztliche Praxis    April 1, 1990   Volume 18, Issue 2 151-154 
Wiesner H, von Hegel G.Successful immobilisation of Przewalski's horses and zebras was obtained by using a combination of STH 2130 (Boehringer) and Tiletamin/Zolazepam.
Clinical evaluation of laryngeal sensation in horses.
The Cornell veterinarian    January 1, 1990   Volume 80, Issue 1 27-34 
Gaughan EM, Hackett RP, Ducharme NG, Rakestraw PC.Sensory innervation of the larynx was examined by tactile stimulation with a blunt biopsy forceps passed through a flexible videoendoscope. Twenty horses with no evidence of laryngeal motor deficit were stimulated on 10 sites by touch with the forceps. Unilateral neurectomies of the internal branch of the left cranial laryngeal nerve were performed on 5 other horses. These horses were stimulated by touch on the same sites preoperatively and up to 1 week postoperatively. In all 25 horses the motor response of the larynx was recorded on videotape and evaluated by 2 observers blind as to treatmen...
A preliminary study on the effects of atropine sulphate on bradycardia and heart blocks during romifidine sedation in the horse.
Veterinary research communications    January 1, 1990   Volume 14, Issue 6 489-502 doi: 10.1007/BF00367061
Gasthuys F, Parmentier D, Goossens L, De Moor A.Romifidine (STH 2130-Cl or Sedivet) is an alpha 2-agonistic imino-imidazol sedative for intravenous use in horses recently developed by Boehringer Ingelheim, Vetmedica GmbH. An exploratory study was done in nine warm-blood horses, randomly divided into three groups, which received different dosages of romifidine (0.04, 0.08 and 0.12 mg/kg of body weight (BWT) intravenously (i.v.)) with at least one week's interval between tests. Romifidine induced a marked bradycardia accompanied by second degree atrioventricular (AV) block and some sinus blocks at all tested dosages. A placebo (NaCl 0.9% i.v....
[Anesthesia by injection of xylazine, ketamine and the benzodiazepine derivative climazolam and the use of the benzodiazepine antagonist Ro 15-3505].
Schweizer Archiv fur Tierheilkunde    January 1, 1990   Volume 132, Issue 5 251-257 
Kaegi B.25 horses which entered the clinic for minor surgery, received ketamine (2.2 mg/kg i.v.) for induction of anesthesia after previous sedation with xylazine (1.1 mg/kg i.v.). As soon as the horses were in the lateral recumbency, the benzodiazepine derivate climazolam was administered at a dose of 0.1 mg/kg i.v. (10 horses) or 0.2 mg/kg i.v. (15 horses). The anesthesia was maintained with repeated injections of ketamine (1.1 mg/kg i.v. every 9-12 minutes). At the end of the surgery, 20 minutes after the last ketamine injection, Ro 15-3505, a benzodiazepine antagonist, was injected at a dose of 0....
Haemodynamic changes during sedation in ponies.
Veterinary research communications    January 1, 1990   Volume 14, Issue 4 309-327 doi: 10.1007/BF00350713
Gasthuys F, De Moor A, Parmentier D.The cardiovascular changes induced by several sedatives were investigated in five ponies with a subcutaneously transposed carotid artery by means of cardiac output determinations (thermodilution technique), systemic and pulmonary artery pressure measurements (direct intravascular method) and arterial blood analysis (blood gases and packed cell volume). The cardiovascular depression (decrease in systemic blood pressure and cardiac output) was long lasting (greater than 90 min) after administration of propionylpromazine (0.08 mg/kg intravenous (i.v.)) together with promethazine (0.08 mg/kg i.v.)...
Extrapyramidal side effects caused by fluphenazine decanoate in a horse.
Journal of the American Veterinary Medical Association    October 15, 1989   Volume 195, Issue 8 1128-1130 
Kauffman VG, Soma L, Divers TJ, Perkons SZ.To provide long-term sedation, a horse was given fluphenazine decanoate, a human antipsychotic drug. The horse was progressively agitated and made unusual repetitive motions. Sedation with barbiturates was an effective treatment. This case is not unusual, and the use of fluphenazine by veterinarians in horses as a mild long-acting tranquilizer is not uncommon.
Comparison of detomidine, butorphanol, flunixin meglumine and xylazine in clinical cases of equine colic.
Equine veterinary journal. Supplement    June 1, 1989   Issue 7 111-116 doi: 10.1111/j.2042-3306.1989.tb05668.x
Jochle W, Moore JN, Brown J, Baker GJ, Lowe JE, Fubini S, Reeves MJ, Watkins JP, White NA.Detomidine hydrochloride, butorphanol tartrate, flunixin meglumine and xylazine hydrochloride were evaluated in a blind multi-centre clinical trial in 152 horses with abdominal pain. The drugs were administered as follows: detomidine 20 or 40 micrograms/kg bodyweight (bwt); butorphanol 0.1 mg/kg bwt; flunixin meglumine 1.0 mg/kg bwt; xylazine hydrochloride 0.5 mg/kg bwt. Each centre compared responses to the two doses of detomidine with those to one of the other analgesics. The drugs were administered intravenously (i.v.) after clinical assessment of the degree of sweating, kicking, pawing, he...
Field trial evaluation of detomidine as a sedative and analgesic in horses with colic.
Equine veterinary journal. Supplement    June 1, 1989   Issue 7 117-120 doi: 10.1111/j.2042-3306.1989.tb05669.x
Jöchle W.In this uncontrolled clinical study 12 investigators cooperated to evaluate the analgesic and sedative effect of detomidine (DORMOSEDAN; Farmos Group Ltd; Finland) in 234 horses with abdominal pain caused by colic. The study was designed to use each animal as its own control and to evaluate its response to the drug over a 60 min period. Detomidine was given intravenously (i.v.) once in 169 cases (167 horses, 1 mule, 1 donkey) at a dose of 20 micrograms/kg bodyweight (bwt), and to 65 horses at 40 micrograms/kg bwt. The higher dose was used predominantly in horses with severe pain which were mor...
The search for the ultimate equine sedative: are we ‘Waiting for Godot’? Combined use of detomidine with opiates in the horse.
Equine veterinary journal    March 1, 1989   Volume 21, Issue 2 96-97 
Jöchle W, Vähä-Vahe T.No abstract available
Single-dose pharmacokinetics of detomidine in the horse and cow.
Journal of veterinary pharmacology and therapeutics    March 1, 1989   Volume 12, Issue 1 65-72 doi: 10.1111/j.1365-2885.1989.tb00643.x
Salonen JS, Vähä-Vahe T, Vainio O, Vakkuri O.The pharmacokinetics of detomidine, a novel analgesic sedative, was studied in the major target species after high (80 micrograms/kg) i.v. and i.m. doses. In addition, drug residues in some organs were determined. Concentrations were measured using a sensitive, detomidine-specific radio-immunoassay method. Rapid absorption following i.m. dosing occurred. Absorption half-lives were 0.15 h (horse) and 0.08 h (cattle). The mean peak concentration in the horse (51.3 ng/ml) was achieved in 0.5 h and in the cow (65.8 ng/ml) in 0.26 h. The areas under the concentration curve after i.m. dosing were 66...
[Anesthesia of horses in the standing position].
Archiv fur experimentelle Veterinarmedizin    March 1, 1989   Volume 43, Issue 2 199-213 
Bülow A, Bülow T, Mill J, Dietz O.Painful interventions can be performed on horse in standing position by means of sedative analgesia, also called standing-position anaesthesia. Combinations of anaesthetics are quite often used, in that context, for the purpose of producing analgetic effects stronger and more reliable than those that would be obtainable from one anaesthetic alone. The following combinations were comparatively tested for their analgetic and sedative effects and their effects upon the organism: Chloralhydrate with Ursonarkon (oxazolidone), Chloralhydrate with Rompun (xylazine), Chloralhydrate with morphine hydro...
Immunoassay detection of drugs in racing horses. IX. Detection of detomidine in equine blood and urine by radioimmunoassay.
Research communications in chemical pathology and pharmacology    February 1, 1989   Volume 63, Issue 2 263-279 
Wood T, Tai CL, Taylor DG, Woods WE, Wang CJ, Houtz PK, Tai HH, Weckman TJ, Yang JM, Sturma L.Detomidine is a potent non-narcotic sedative agent which is currently in the process of being approved for veterinary clinical use in the United States. Since no effective screening method in horses is available for detomidine, we have developed an 125I radioimmunoassay for detomidine in equine blood and urine as part of a panel of tests for illegal drugs in performance horses. Our 125I radioimmunoassay has an I-50 for detomidine of approximately 2 ng/ml. Our assay shows limited cross-reactivity with the pharmacodynamically similar xylazine, but does not cross-react with acepromazine, epinephr...
Detomidine.
The Veterinary record    December 17, 1988   Volume 123, Issue 25 655 
Vainio O.No abstract available
Effect of administration of an alpha 2-adrenergic agonist, xylazine, on pulsatile gonadotrophin secretion in anoestrous horse mares.
Journal of reproduction and fertility    November 1, 1988   Volume 84, Issue 2 693-700 doi: 10.1530/jrf.0.0840693
Fitzgerald BP, Mellbye LB.Two experiments were performed to test the hypothesis that the seasonal suppression of gonadotrophin pulse frequency in anoestrous horse mares reflects inhibitory neural mechanisms. In a preliminary experiment (Exp. 1) conducted in February, 4 anoestrous mares were sedated by repeated intravenous injections of xylazine, an alpha 2-adrenergic receptor agonist. On the day of treatment, 1-2 LH pulses were observed in xylazine-treated mares. In contrast, during a 12-h period only 1/8 untreated control mares exhibited a LH pulse. In Exp. 2, the effect of xylazine-induced sedation on pulsatile gonad...
Detomidine-butorphanol sedation in equine clinical practice.
The Veterinary record    October 8, 1988   Volume 123, Issue 15 388-390 doi: 10.1136/vr.123.15.388
Taylor PM, Browning AP, Harris CP.Combinations of detomidine (mean dose rate 13 micrograms/kg) and butorphanol (mean dose rate 26 micrograms/kg) were used to sedate 61 horses for a variety of surgical or diagnostic procedures in general equine practice. Three horses were sedated on more than one occasion. The degree of sedation was graded from 3 to 0 (deep sedation to no effect) and any side effects were recorded. Forty-three per cent of the horses were graded 3, 46 per cent were graded 2, 8 per cent were graded 1 and 3 per cent were graded 0. Bradycardia and ataxia were the major side effects. The combination was judged to be...
The search for the ultimate equine sedative: are we ‘waiting for Godot’?
Equine veterinary journal    September 1, 1988   Volume 20, Issue 5 314-315 doi: 10.1111/j.2042-3306.1988.tb01532.x
Hubbell JA.No abstract available
Cardiorespiratory and sedative effects of a combination of acepromazine, xylazine and methadone in the horse.
Equine veterinary journal    September 1, 1988   Volume 20, Issue 5 364-367 doi: 10.1111/j.2042-3306.1988.tb01546.x
Nilsfors L, Kvart C, Kallings P, Carlsten J, Bondesson U.Cardiorespiratory and sedative effects of a combination of acepromazine, xylazine and methadone were studied in the horse. Acepromazine and xylazine produced cardiovascular effects whereas methadone mainly affected respiratory rate. Decreases in heart rate, arterial blood pressure and respiratory rate were seen. Sedation was superior to that of acepromazine, xylazine or a combination of these. No serious side effects were seen.
Combined use of detomidine with opiates in the horse.
Equine veterinary journal    September 1, 1988   Volume 20, Issue 5 331-334 doi: 10.1111/j.2042-3306.1988.tb01540.x
Clarke KW, Paton BS.The effects of administration of one of four opiates (pethidine 1 mg/kg bodyweight (bwt), morphine 0.1 mg/kg bwt, methadone 0.1 mg/kg bwt, and butorphanol 0.05 mg/kg bwt) given intravenously to horses and ponies already sedated with detomidine (10 micrograms/kg bwt) were investigated. Behavioural, cardiovascular and respiratory effects of the combinations were compared with those occurring with detomidine alone. Addition of the opiate increased the apparent sedation and decreased the response of the animal to external stimuli. At doses used, butorphanol produced the most reliable response. Sid...
Detomidine (Domosedan) in foals: sedative and analgesic effects.
Equine veterinary journal    September 1, 1988   Volume 20, Issue 5 327-330 doi: 10.1111/j.2042-3306.1988.tb01538.x
Oijala M, Katila T.Detomidine was administered twice to six foals (14 to 94 days old) using three different doses (10, 20 and 40 micrograms/kg bodyweight intravenously) in a double blind trial. Sedation, analgesia, heart rate and clinically observed side-effects were recorded. Detomidine showed strong sedative effects at all doses tested. Sedation deepened very little by increasing the dose from 10 to 40 micrograms/kg bodyweight, but the duration of the effect was longer. Analgesia was considered good with the largest dose (40 micrograms/kg), and moderate or non-existent with the lower doses. Detomidine caused a...
Dose-related effects of detomidine on autonomic responses in the horse.
Journal of autonomic pharmacology    September 1, 1988   Volume 8, Issue 3 241-249 doi: 10.1111/j.1474-8673.1988.tb00187.x
Kamerling SG, Cravens WM, Bagwell CA.1. Detomidine is a novel veterinary sedative analgesic which is thought to act by stimulation of alpha 2 adrenoreceptors. The present study was undertaken to determine the direction, time course, and dose-response relationship of detomidine on specific autonomic responses in the unanaesthetized horse. 2. Detomidine was administered intravenously to eight adult thoroughbred racehorses at doses of 0.010-0.040 mg kg-1, according to a double-blind Latin square crossover design. Cardiac and respiratory rates, pupil diameter and rectal temperature were monitored for 180 min postinjection. 3. Detomid...
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