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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.
Anesthesia and sedation for late-term mares.
The Veterinary clinics of North America. Equine practice    April 1, 1994   Volume 10, Issue 1 219-236 doi: 10.1016/s0749-0739(17)30375-9
Wilson DV.Heavily pregnant mares requiring anesthesia present special problems and challenges. The use of short-acting anesthetic agents, combined with inhalational anesthesia, mechanical ventilation, and blood pressure support, will ensure an optimal outcome by maintaining both maternal and fetal homeostasis. The provision of oxygen during recovery to the still gravid mare also is important for fetal survival.
Anesthesia and sedation of foals.
The Veterinary clinics of North America. Equine practice    April 1, 1994   Volume 10, Issue 1 67-85 doi: 10.1016/s0749-0739(17)30369-3
Dunlop CI.Physiologic similarities and differences between foals and adult horses, including response to pain, cardiopulmonary function, ability to compensate for dehydration and hemorrhage, and response to anesthetic drugs, are considered in this article. Preanesthetic evaluation, choice of anesthetic drugs, technique, and monitoring support requirements through to anesthetic recovery are based on these physiologic considerations. Anesthetic techniques discussed include drugs for premedication, parenteral or inhalational anesthetic induction, and maintenance using inhalational and parenteral anesthesia...
Sedation of horses with romifidine and butorphanol.
The Veterinary record    January 22, 1994   Volume 134, Issue 4 90-91 doi: 10.1136/vr.134.4.90
Browning AP, Collins JA.Combinations of romifidine and butorphanol were used to sedate 55 horses for a variety of surgical, therapeutic and diagnostic procedures. Eighteen of the horses were given the drugs separately, romifidine first followed by butorphanol four minutes later, and 37 were given the drugs together. The levels of sedation and ataxia were assessed and graded, and there were no statistically significant differences between the two methods of administration. The side effects were typical of the alpha-2 agonists, including bradycardia, heart block and some sweating. Box-walking was observed in one horse....
Measurements of urethral pressure profiles in the male horse.
Equine veterinary journal    January 1, 1994   Volume 26, Issue 1 55-58 doi: 10.1111/j.2042-3306.1994.tb04332.x
Ronen N.Urinary tract pressure profiles were evaluated in 6 clinically normal geldings over 3 consecutive days. This was performed by introducing a 1.3 m-long cuffed catheter into the urinary tract, under xylazine sedation (0.8 mg/kg, iv). The method was reproducible. The mean (+/- sd) intra-vesicular pressure (IVP) and maximal urethral closure pressures (MUCP) were 10.3 (+/- 1.7) and 129.8 (+/- 19.6) cmH2O, respectively, and the ratio between MUCP and IVP was 13.2 (+/- 2.5). A gelding with urinary incontinence showed a significantly lower MUCP (73.4 cmH2O), and an MUCP to IVP ratio of 8.0. It was con...
Sedatives, tranquilizers, and stimulants.
The Veterinary clinics of North America. Equine practice    December 1, 1993   Volume 9, Issue 3 621-634 doi: 10.1016/s0749-0739(17)30389-9
Dyke TM.Drugs of relevance to equine practice that modify the central nervous system (CNS) can be broadly classified as depressants or stimulants. The pharmacologic mechanisms of action, uses, and side effects of selected CNS depressant and stimulant drugs in horses are reviewed. Knowledge of the way these CNS-modifying drugs may affect performance is limited.
Cardiopulmonary and behavioral responses to computer-driven infusion of detomidine in standing horses.
American journal of veterinary research    December 1, 1993   Volume 54, Issue 12 2075-2082 
Daunt DA, Dunlop CI, Chapman PL, Shafer SL, Ruskoaho H, Vakkuri O, Hodgson DS, Tyler LM, Maze M.Cardiopulmonary and behavioral responses to detomidine, a potent alpha 2-adrenergic agonist, were determined at 4 plasma concentrations in standing horses. After instrumentation and baseline measurements in 7 horses (mean +/- SD for age and body weight, 6 +/- 2 years, and 531 +/- 48.5 kg, respectively), detomidine was infused to maintain 4 plasma concentrations: 2.1 +/- 0.5 (infusion 1), 7.2 +/- 3.5 (infusion 2), 19.1 +/- 5.1. (infusion 3), and 42.9 +/- 10 (infusion 4) ng/ml, by use of a computer-controlled infusion system. Detomidine caused concentration-dependent sedation and somnolence. The...
Influence of yohimbine and tolazoline on the cardiovascular, respiratory, and sedative effects of xylazine in the horse.
Journal of veterinary pharmacology and therapeutics    September 1, 1993   Volume 16, Issue 3 350-358 doi: 10.1111/j.1365-2885.1993.tb00182.x
Kollias-Baker CA, Court MH, Williams LL.To determine the effects of yohimbine and tolazoline on the cardiovascular, respiratory and sedative effects of xylazine, four horses were sedated with xylazine and treated with either yohimbine, tolazoline or saline. Xylazine was administered as an intravenous (i.v.) bolus (1.0 mg/kg) followed by a continuous infusion at the rate of 12 micrograms/kg/min. Heart rate, respiratory rate, mean arterial pressure, arterial blood gases, and the chin-to-floor distance were recorded throughout the experiment. After 60 min, either yohimbine or tolazoline was administered i.v. in incremental doses until ...
Disposition, bioavailability and clinical efficacy of orally administered acepromazine in the horse.
Journal of veterinary pharmacology and therapeutics    September 1, 1993   Volume 16, Issue 3 359-368 doi: 10.1111/j.1365-2885.1993.tb00183.x
Hashem A, Keller H.The pharmacokinetics and pharmacological efficacy of orally (p.o.) administered acepromazine were studied and compared with the intravenous (i.v.) route of administration in a cross-over study using six horses. The oral kinetics of acepromazine can be described by a two-compartment open model with first-order absorption. The drug was rapidly absorbed after p.o. administration with a half-life of 0.84 h, tmax of 0.4 h and Cmax of 59 ng/ml. The elimination was slower after p.o. administration (half-life 6.04 h) than after i.v. injection (half-life 2.6 h). The bioavailability of the orally admini...
Paravertebral thoracolumbar anaesthesia in 10 horses.
Equine veterinary journal    July 1, 1993   Volume 25, Issue 4 304-308 doi: 10.1111/j.2042-3306.1993.tb02968.x
Moon PF, Suter CM.The caudal border of the last rib was used as a reliable point of orientation while performing paravertebral thoracolumbar anaesthesia (PTLA) on 10 horses undergoing standing flank laparotomy. The local anaesthetic in all horses was 2% lidocaine. The PTLA procedure was completed in 9.8 +/- 1.8 mins (mean +/- sd). Sedation was provided by a combination of intravenous morphine with xylazine or detomidine. Overall analgesia, provided by the combination of PTLA and sedation, was rated as excellent in 2 horses and good in 6 horses. In the remaining 2 horses, overall analgesia was rated as fair beca...
Clinical evaluation of romifidine/ketamine/halothane anaesthesia in horses.
The Veterinary record    June 5, 1993   Volume 132, Issue 23 572-575 doi: 10.1136/vr.132.23.572
Diamond MJ, Young LE, Bartram DH, Gregg AS, Clutton RE, Long KJ, Jones RS.Romifidine, 100 micrograms/kg administered by intravenous injection, was evaluated as a premedicant to ketamine/halothane anaesthesia in 60 horses. Sedation developed within one to two minutes. In three cases mild staggering occurred within two minutes. Anaesthesia was induced after five minutes by the intravenous administration of ketamine (2 to 2.2 mg/kg). A mean time of 79 seconds elapsed before lateral recumbency was adopted. Fifty-four of the horses sank smoothly to the floor, with occasional steps sideways. Jaw tone, limb rigidity and mild muscle tremors often persisted for short periods...
Clinical effects of detomidine with or without atropine used for arthrocentesis in horses.
The Canadian veterinary journal = La revue veterinaire canadienne    May 1, 1993   Volume 34, Issue 5 296-300 
Jones DL.The effectiveness of detomidine with or without atropine sulfate premedication in producing sedation and analgesia for arthrocentesis was studied in 12 horses. The effects were evaluated by monitoring heart and respiratory rates, borborygmi, distance from the lower lip to the floor, systolic blood pressure, and response to needle insertion. Either atropine or saline (as a placebo) was administered immediately prior to detomidine. All drugs were administered intravenously. Measurements were taken prior to drug injection and at 1, 5, 10, 15, 20, 25, 30, 40, 50, 60, 120, 180 and 240 minutes posti...
In vitro effects of alpha 2-adrenergic receptor stimulation on cholinergic contractions of equine distal airways.
American journal of veterinary research    May 1, 1993   Volume 54, Issue 5 788-792 
LeBlanc PH, Eberhart SW, Robinson NE.In horses with noninduced, reversible airway obstruction (heaves), pulmonary function is improved after sedation with the alpha 2-adrenergic agonist xylazine. The mechanism of this effect is undetermined. Because the predominant excitatory innervation of equine airways is cholinergic, the influence of alpha 2-adrenergic receptor stimulation on the response of isolated distal airways to cholinergic stimulation was determined. Distal bronchial segments from 22 healthy horses were suspended in isolated organ baths where their mechanical responses to various stimuli could be studied. Each tissue w...
Normal equine ocular anatomy and eye examination.
The Veterinary clinics of North America. Equine practice    December 1, 1992   Volume 8, Issue 3 427-449 doi: 10.1016/s0749-0739(17)30434-0
Cooley PL.When compared with small domestic animals, the horse has unique ocular characteristics (complete bony orbit, well-developed eyelid muscles, a nasal and temporal gray limbal line, granulae iridica, paurangiotic fundus). Knowledge of normal equine ocular anatomy is essential for ocular lesion interpretation. It is important to obtain a full history and general examination before sedation, nerve blocks, or other diagnostic ophthalmic tests are performed. All ocular examinations should include a systematic evaluation of both the anterior and posterior segments. Selection of other diagnostic tests ...
Effect of head and neck position on respiratory mechanics in horses sedated with xylazine.
American journal of veterinary research    September 1, 1992   Volume 53, Issue 9 1652-1657 
Lavoie JP, Pascoe JR, Kurpershoek CJ.We studied the temporal changes in respiratory mechanics associated with xylazine administration (1.1 mg/kg of body weight, IV) in standing horses (experiment 1), and determined the effects of head and neck position (experiment 2) and atropine administration (experiment 3) on the observed changes. Thoroughbred geldings, 3 to 5 years old (5 in experiment 1, 4 in experiments 2 and 3) were used. Flow rates were obtained from a pneumotachograph and a differential transducer attached to a tight-fitting mask. Electronic integration of the flow signal gave tidal volume. Total pulmonary pressure (PL) ...
A comparison of the sedative effects of three alpha 2-adrenoceptor agonists (romifidine, detomidine and xylazine) in the horse.
Journal of veterinary pharmacology and therapeutics    June 1, 1992   Volume 15, Issue 2 194-201 doi: 10.1111/j.1365-2885.1992.tb01007.x
England GC, Clarke KW, Goossens L.The sedative effects of a new alpha 2-adrenoceptor agonist, romifidine, were compared with those of xylazine and detomidine. Five horses were treated with two doses of romifidine (40 micrograms/kg body weight and 80 micrograms/kg body weight), two doses of detomidine (10 micrograms/kg body weight and 20 micrograms/kg body weight) and one dose of xylazine (1 mg/kg body weight) given by intravenous injection using a Latin-square design. The dose of 80 micrograms/kg romifidine appeared equipotent to 1 mg/kg xylazine and 20 micrograms/kg detomidine, although at these doses both xylazine and detomi...
Effects of xylazine on ventilation in horses.
American journal of veterinary research    June 1, 1992   Volume 53, Issue 6 916-920 
Lavoie JP, Pascoe JR, Kurpershoek CJ.The effects of 3 commonly used dosages (0.3, 0.5, and 1.1 mg/kg of body weight, IV) of xylazine on ventilatory function were evaluated in 6 Thoroughbred geldings. Altered respiratory patterns developed with all doses of xylazine, and horses had apneic periods lasting 7 to 70 seconds at the 1.1 mg/kg dosage. Respiratory rate, minute volume, and partial pressure of oxygen in arterial blood (PaO2) decreased significantly (P less than 0.001) with time after administration of xylazine, but significant differences were not detected among dosages. After an initial insignificant decrease at 1 minute a...
Effects of atipamezole on xylazine sedation in ponies.
The Veterinary record    March 28, 1992   Volume 130, Issue 13 268-271 doi: 10.1136/vr.130.13.268
Luna SP, Beale NJ, Taylor PM.Atipamezole antagonism of xylazine sedation was evaluated in six ponies. Atipamezole (0.15 mg/kg) or saline was injected intravenously 15 minutes after the ponies had been sedated with xylazine (1.0 mg/kg). Arterial blood pressure and gases, pulse and respiratory rates, the electrocardiogram, nose-to-ground distance and a subjective sedation score were recorded. The pretreatment nose-to-ground distance and PaO2 returned to normal sooner after atipamezole than after saline and the ponies' appetite and normal locomotion also recovered sooner. No significant differences were observed between the ...
Sympatho-adrenal activity and the clinical sedative effect of detomidine in horses.
Equine veterinary journal. Supplement    February 1, 1992   Issue 11 66-68 doi: 10.1111/j.2042-3306.1992.tb04777.x
Raekallio M, Leino A, Vainio O, Scheinin M.Thirty-nine horses were given detomidine 10 micrograms/kg bodyweight (bwt) intravenously (iv) and six horses were given a corresponding volume of saline solution before minor procedures. Venous blood samples were collected for catecholamine and cortisol determination immediately before the detomidine or saline injection and 20 mins after it. The behaviour of the horse at the time of detomidine injection and the extent of sedation were evaluated. Plasma adrenaline, noradrenaline and the catecholamine metabolites, 3,4-dihydroxyphenylglycol (DHPG) and 3,4-dihydroxyphenylacetic acid (DOPAC), and c...
Identification of detomidine carboxylic acid as the major urinary metabolite of detomidine in the horse.
European journal of drug metabolism and pharmacokinetics    January 1, 1992   Volume 17, Issue 1 13-20 doi: 10.1007/BF03189982
Salonen JS, Vuorilehto L, Gilbert M, Maylin GA.Horse urine was investigated for metabolites by chromatography and mass spectrometry following the oral administration of the large animal analgesic sedative detomidine to two stallions and intravenous administration of [3H]-detomidine to a mare. Detomidine carboxylic acid and hydroxydetomidine glucuronic acid conjugate were identified in the urine after the oral doses. In addition, traces of free hydroxydetomidine were observed. About half of the radioactivity of [3H]-detomidine was excreted in the urine in 12 h after the i.v. dose (80 micrograms/kg). Most of the excretion occurred between 5 ...
Chemical restraint for surgery in the standing horse.
The Veterinary clinics of North America. Equine practice    December 1, 1991   Volume 7, Issue 3 521-533 doi: 10.1016/s0749-0739(17)30484-4
LeBlanc PH.Chemical restraint can be a useful pharmacologic tool to assist the veterinarian performing surgery in the standing horse. The agents discussed impose minimal adverse side effects and are considered relatively safe when administered in the doses described. Acetylpromazine, the most widely used tranquilizer, produces mild sedation but no analgesia. The use of tranquilizers for surgical procedures requires the combined use of either a local anesthetic technique or a sedative-hypnotic or opiate to provide analgesia. Sedative-hypnotics such as xylazine and detomidine or opiates such as morphine an...
Ophthalmic procedures and surgery in the standing horse.
The Veterinary clinics of North America. Equine practice    December 1, 1991   Volume 7, Issue 3 535-547 doi: 10.1016/s0749-0739(17)30485-6
Wilkie DA.Although many ophthalmic procedures can be performed on the standing horse, the decision to perform a procedure under sedation rather than general anesthesia must be made on the basis of the temperament of the horse, severity of the injury, and skill of the veterinarian. For example, veterinarians who are not comfortable with small suture material may find accurate repair of an eyelid laceration easier after general anesthesia rather than attempting to handle this suture in a moving patient. Correct use of nerve blocks and topical anesthesia will greatly facilitate examination, diagnosis, and ...
Medetomidine in horses.
The Veterinary record    November 23, 1991   Volume 129, Issue 21 476 doi: 10.1136/vr.129.21.476
Jones P, Hoare C.No abstract available
Comparison of the sedative effects of medetomidine and xylazine in horses.
The Veterinary record    November 9, 1991   Volume 129, Issue 19 421-423 doi: 10.1136/vr.129.19.421
Bryant CE, England GC, Clarke KW.The sedative effects in horses of the new alpha 2 agonist medetomidine were compared with those of xylazine. Four ponies and one horse were treated on separate occasions with two doses of medetomidine (5 micrograms/kg bodyweight and 10 micrograms/kg bodyweight) and with one dose of xylazine (1 mg/kg bodyweight) given by intravenous injection. Medetomidine at 10 micrograms/kg was similar to 1 mg/kg xylazine in its sedative effect but produced more severe and more prolonged ataxia, and one animal fell over during the study. Medetomidine at 5 micrograms/kg produced less sedation but a similar deg...
Endoscopic examination of normal paranasal sinuses in horses.
Veterinary surgery : VS    November 1, 1991   Volume 20, Issue 6 418-423 doi: 10.1111/j.1532-950x.1991.tb00350.x
Ruggles AJ, Ross MW, Freeman DE.The frontal, caudal maxillary, and rostral maxillary sinuses of 10 equine cadavers were examined endoscopically, and the findings were confirmed by sinusotomy. Similar endoscopic examinations were performed in five conscious, adult horses by using sedation and local anesthesia. Useful portals of entry for the arthroscope in adult horses were: for the frontal sinus, 60% of the distance in a lateral direction from midline to the medial canthus and 0.5 cm caudal to the medial canthus; for the caudal maxillary sinus, 2 cm rostral and 2 cm ventral to the medial canthus; and for the rostral maxillar...
Use of scintigraphy for the determination of mucociliary clearance rates in normal, sedated, diseased and exercised horses.
Canadian journal of veterinary research = Revue canadienne de recherche veterinaire    October 1, 1991   Volume 55, Issue 4 315-320 
Willoughby RA, Ecker GL, McKee SL, Riddolls LJ.Mucociliary clearance rates from the trachea were determined in normal, sedated, diseased and exercised horses from scintigraphs obtained after an injection of technetium-99m sulphide colloid into the tracheal lumen. The group mean tracheal clearance rate of eight clinically normal horses during 42 trials was 2.06 +/- 0.38 cm/min. Significant between horse differences were found (p less than 0.05). When six and seven of these horses were given xylazine and detomidine hydrochloride, respectively, mean group tracheal clearance rates dropped significantly (p less than 0.05). The decreases from ea...
[The effect of the sedative and analgesic detomidine for laryngoscopy of adult horses and foals].
Berliner und Munchener tierarztliche Wochenschrift    October 1, 1991   Volume 104, Issue 10 340-346 
Ohnesorge VB, Deegen E, Jöchle W.Detomidine was used in this field trial effectively as a sedative and analgesic for laryngoscopic examinations in a total of 193 foals and 806 mature horses (Hanoverians). Detomidine was given either i.v. in foals 3 to 11 months old (20 micrograms/kg) and in mature horses (15 micrograms/kg), or i.m. in foals below 6 months of age (35 micrograms/kg). After i.v. administration, laryngoscopy was tolerated in more than 90% of all animals without additional use of a twitch, while in foals treated i.m. more than 70% required a twitch in order to enable this procedure. The effectiveness of detomidine...
Effects of detomidine on equine oesophageal function as studied by contrast radiography.
The Veterinary record    July 27, 1991   Volume 129, Issue 4 67-69 doi: 10.1136/vr.129.4.67
Watson TD, Sullivan M.The effects of sedation with detomidine on oesophageal function were assessed by contrast radiography in 10 healthy adult thoroughbred horses. Barium swallows were monitored by means of image intensification, first without sedation and then after the intravenous administration of detomidine at doses of 10 and 20 micrograms/kg bodyweight. The transit time of contrast agent to the oesophageal hiatus was recorded and each swallow was scored for markers of oesophageal dysfunction. Analysis of the data indicated that there were highly significant dose dependent increases in the transit time, the re...
The reliability of endoscopic examination in assessment of arytenoid cartilage movement in horses. Part II. Influence of side of examination, reexamination, and sedation.
Veterinary surgery : VS    May 1, 1991   Volume 20, Issue 3 180-184 doi: 10.1111/j.1532-950x.1991.tb00332.x
Ducharme NG, Hackett RP, Fubini SL, Erb HN.Twenty Thoroughbred and Standardbred horses underwent endoscopic evaluation of arytenoid cartilage movement twice within 1 week. Each time, a flexible endoscope was passed without sedation through the right nostril and the left nostril, and through the right nostril 5 minutes after administration of xylazine hydrochloride (0.55 mg/kg or 1.1 mg/kg intravenously). Laryngeal cartilage movement was videorecorded. All videotaped images were reviewed by three veterinarians and subjectively placed in one of four grades. The intraobserver agreement rate varied from 52.6% for examination under sedation...
Xylazine and tiletamine-zolazepam for induction of anaesthesia maintained with halothane in 19 horses.
Equine veterinary journal    May 1, 1991   Volume 23, Issue 3 224-225 doi: 10.1111/j.2042-3306.1991.tb02761.x
Abrahamsen EJ, Hubbell JA, Bednarski RM, Muir WW, Macioce BA.No abstract available
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...
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