Analyze Diet

Topic:Urine Analysis

Urine analysis in horses involves the examination of urine to assess the health and physiological status of the animal. This diagnostic tool provides insights into the renal function, hydration status, and potential presence of systemic diseases. Key parameters evaluated in equine urine analysis include pH, specific gravity, protein levels, glucose, ketones, and the presence of blood or sediment. Variations in these parameters can indicate metabolic disorders, infections, or other health issues. This page compiles peer-reviewed research studies and scholarly articles that explore the methodologies, findings, and clinical implications of urine analysis in equine veterinary practice.
Xylazine causes transient dose-related hyperglycemia and increased urine volumes in mares.
American journal of veterinary research    February 1, 1984   Volume 45, Issue 2 224-227 
Thurmon JC, Steffey EP, Zinkl JG, Woliner M, Howland D.Xylazine given IV at doses of 0.5, 1.0, and 1.5 mg/kg to mares caused a significant (P less than 0.05) dose-related increase in serum glucose concentration and urine volume. Serum glucose concentrations as much as 150 mg/dl were recorded in mares after they were given the largest xylazine dose. The greatest urine volume, similar to changes in peak glucose concentration, always occurred during the first hour after dosing with xylazine and averaged 1.82, 3.93, and 5.68 ml/kg/hour after the 0.5-, 1.0-, and 1.5-mg/kg doses, respectively, were given. Urine osmolality and specific gravity were signi...
[Demonstration of urinary excretion of 19-nortestosterone of endogenous origin in the male horse].
Comptes rendus de l'Academie des sciences. Serie III, Sciences de la vie    January 1, 1984   Volume 299, Issue 6 139-141 
Courtot D, Guyot JL, Benoît E.No abstract available
Analysis of propionylpromazine and its metabolites in horse urine.
The Cornell veterinarian    January 1, 1984   Volume 74, Issue 1 38-49 
Dewey EA, Maylin GA.The metabolism of propionylpromazine in the horse was studied. Although propionylpromazine is not currently approved or recommended for use in horses, it has been used illegally to alter their performance. Propionylpromazine hydrochloride was administered intramuscularly at clinical and subclinical doses. Three metabolites were detected in urine. The major metabolite was identified as 2-(1-hydroxypropyl) promazine sulfoxide. The detection of this metabolite in routine drug testing has been described.
Survey of positive results from racecourse antidoping samples received at Racecourse Security Services’ Laboratories.
Equine veterinary journal    January 1, 1984   Volume 16, Issue 1 39-42 doi: 10.1111/j.2042-3306.1984.tb01846.x
Moss M S..A review of positive Jockey Club "dope tests" during the 12 years from 1970 to 1981 inclusive is presented and a comparison made with certain overseas racing authorities for varying periods between 1975 and 1981. Urinary pH of post race urine samples is predominantly acidic (although varying in a significant manner throughout the year) and thus favours excretion of the generally more potent basic drugs. The proportion of positive results was about the same in winners and non-winners, ie, one in 400 horses sampled. Drugs found fell mainly into four categories: methylxanthines; non-steroidal ant...
Effect of urine pH on urine levels of oxyphenbutazone in racing horses.
Drug metabolism and disposition: the biological fate of chemicals    November 1, 1983   Volume 11, Issue 6 617-619 
Houston T, Tobin T, Blake JW.No abstract available
Phenylbutazone kinetics and metabolite concentrations in the horse after five days of administration.
American journal of veterinary research    November 1, 1983   Volume 44, Issue 11 2104-2109 
Soma LR, Gallis DE, Davis WL, Cochran TA, Woodward CB.Phenylbutazone (PBZ) was administered (8.8 mg/kg of body weight) every 24 hours for 5 consecutive days, orally for the first 4 days and IV on day 5. The half-life (t 1/2) after this daily administration was 6.2 hours and the volume of distribution was 0.152 +/- 0.014 L/kg; the bioavailability after oral administration was 91.8 +/- 2.5%. The plasma concentration of PBZ at experimental hour (EH) 24 (24 hours after the 1st oral dose) was 1.7 +/- 0.39 micrograms/ml and increased to 4.2 +/- 0.29 micrograms/ml at EH 48 (24 hours after the 2nd oral dose). Values at EH 72, 96, and 120 (24 hours after ...
Observational study of “urine testing” in the horse and donkey stallion.
Equine veterinary journal    October 1, 1983   Volume 15, Issue 4 330-336 doi: 10.1111/j.2042-3306.1983.tb01816.x
Lindsay FE, Burton FL.Although "urine testing" is said to enable the male equid to assess the sexual status of the mare, there are no reports in the literature of any detailed study of this behavioural response of the stallion. Behavioural response to conspecific urine was studied in two horse stallions and one donkey stallion. The relevant nasopalatine anatomy is described. Events observed during urine testing included head, neck, lip, jaw, tongue movements, penile changes and nasal secretion. Nasal endoscopy indicated that the source of part of the nasal secretion was the secretory glands of the vomeronasal organ...
Renal papillary necrosis in horses after phenylbutazone and water deprivation.
Veterinary pathology    September 1, 1983   Volume 20, Issue 5 603-610 doi: 10.1177/030098588302000512
Gunson DE, Soma LR.Acute renal papillary necrosis occurred in five horses given normal therapeutic doses of phenylbutazone and deprived of water for 36 to 48 hours prior to euthanasia. Five horses given phenylbutazone alone and four horses subjected to water deprivation alone did not develop papillary necrosis. Urinalyses were normal prior to water deprivation, and also after water deprivation in the horses that did not receive phenylbutazone, but the water-deprived, phenylbutazone-treated horses had many red blood cells, transitional epithelial cells, and large numbers of oxalate crystals in their urine. Ulcera...
[Method for detection of doping drugs in the horse urine containing polyethylene glycol by high performance liquid chromatography].
Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan    July 1, 1983   Volume 103, Issue 7 800-804 doi: 10.1248/yakushi1947.103.7_800
Ohtake I, Matsui Y, Matsumoto T, Momose A.No abstract available
Studies related to the metabolism of anabolic steroids in the horse: the metabolism of 1-dehydrotestosterone and the use of fast atom bombardment mass spectrometry in the identification of steroid conjugates.
Biomedical mass spectrometry    July 1, 1983   Volume 10, Issue 7 434-440 doi: 10.1002/bms.1200100709
Dumasia MC, Houghton E, Bradley CV, Williams DH.The metabolism and urinary excretion of 1,2(n)-3H-1-dehydrotestosterone were studied in cross-bred gelded horses. Approximately 40% of the dose was excreted in 24 h. The steroid metabolites were extracted by Amberlite XAD-2 resin and fractionated into glucuronides and sulphoconjugates. Unchanged 1-dehydrotestosterone was the only component identified by gas chromatography mass spectrometry after solvolysis of the sulphoconjugates. Positive and negative ion fast atom bombardment mass spectra were obtained on the purified 1-dehydrotestosterone sulphoconjugate isolated from horse urine and on the...
Diuretic effect of high-ceiling diuretics in ponies.
Journal of veterinary pharmacology and therapeutics    June 1, 1983   Volume 6, Issue 2 157-158 doi: 10.1111/j.1365-2885.1983.tb00394.x
Frey HH.No abstract available
Pharmacokinetics and protein binding of morphine in horses.
American journal of veterinary research    May 1, 1983   Volume 44, Issue 5 870-874 
Combie JD, Nugent TE, Tobin T.Morphine could be detected in horses dosed with 0.1 mg of drug/kg of body weight for up to 48 hours in blood and 144 hours in urine. This dose of morphine elicited no observable effects and is a suggested analgesic dose. Computer analysis revealed that a 3-compartment open system was the best fitting model with a serum half life (t1/2(beta)) of 87.9 minutes and a urine t1/2(beta) of 101.1 minutes. Binding to equine serum proteins was linear over a drug concentration range of 3.88 X 10(-5)M to 3.50 X 10(-8)M and averaged 31.6%. In RBC-partitioning experiments, 78.1% of the drug was found in the...
The metabolism of fenclofenac in the horse.
Xenobiotica; the fate of foreign compounds in biological systems    April 1, 1983   Volume 13, Issue 4 233-240 doi: 10.3109/00498258309052259
Marsh MV, Caldwell J, Sloan TP, Smith RL, Horner M, Moss MS.14C-Fenclofenac (2-(2'-4'-dichlorophenoxy)-phenylacetic acid) was administered orally to horses, and urinary metabolites investigated by chromatography. Fenclofenac was rapidly absorbed and eliminated, with a plasma half-life (t1/2) of 2.3 h, with 83.2 and 85.8% of the dose being recovered in the urine in 0-24 h. The major urinary metabolite was the ester glucuronide (58.8, 70.0% dose), and evidence is presented that this metabolite undergoes a structural rearrangement to give beta-glucuronidase-resistant isomers. The other 14C-labelled components in horse urine were unchanged fenclofenac (13....
Trimethoprim-sulfadiazine in the horse: serum, synovial, peritoneal, and urine concentrations after single-dose intravenous administration.
American journal of veterinary research    April 1, 1983   Volume 44, Issue 4 540-543 
Brown MP, Kelly RH, Stover SM, Gronwall R.Six healthy adult mares were given a single IV injection of trimethoprim (TMP)-sulfadiazine (SDZ) at a dosage rate of 2.5 mg of TMP/kg of body weight and 12.5 mg of SDZ/kg. Serum, synovial, peritoneal, and urine TMP-SDZ concentrations were measured serially over a 48-hour period. The highest measured mean concentrations of TMP and SDZ were found in the first (0.5 hour) sample of serum, synovial fluid, and peritoneal fluid. The mean peak concentrations of TMP and SDZ averaged 4.37 micrograms/ml and 21.81 micrograms/ml for serum, 2.95 micrograms/ml and 15.31 micrograms/ml for synovial fluid, and...
Reliability of single-sample phosphorus fractional excretion determination as a measure of daily phosphorus renal clearance in equids.
American journal of veterinary research    March 1, 1983   Volume 44, Issue 3 500-502 
Lane VM, Merritt AM.In 4 healthy horses and 1 Welsh pony, fractional renal excretions of phosphorus (FEp) determined from 9 hourly time collections taken over a 24-hour period were compared to assess whether a single-sample collection would be an accurate indicator of the daily FEp. The mean FEp for each animal varied from 0.115% to 0.302%; the 2 animals with the highest values were significantly different (P less than 0.05) from the 3 with the lowest values. Individual variation within animals was not great, however, because it was calculated that the 24-hour FEp value could be found within +/- 0.087% of the sin...
Cantharidin toxicosis in horses.
Journal of the American Veterinary Medical Association    February 1, 1983   Volume 182, Issue 3 283-284 
Beasley VR, Wolf GA, Fischer DC, Ray AC, Edwards WC.No abstract available
Pre-race testing and its role in equine medication control.
Equine veterinary journal    January 1, 1983   Volume 15, Issue 1 54-55 doi: 10.1111/j.2042-3306.1983.tb01704.x
Tobin T.In general, blood is the only material on which a practical pre-race testing scheme can be based. Blood testing is not as sensitive as urine testing and detects only about 66 per cent of the drugs detectable in urine. Therefore, pre-race blood testing is always performed in conjunction with post race urine testing. Because blood is easily and rapidly drawn, the use of blood samples in all post race testing schemes is recommended. Pre-race testing is also a relatively expensive proposition, but it is the only method which actually prevents the running of an illegally medicated horse.
Pharmacology, pharmacokinetics, and behavioral effects of caffeine in horses.
American journal of veterinary research    January 1, 1983   Volume 44, Issue 1 57-63 
Greene EW, Woods WE, Tobin T.Caffeine (4 mg/kg) was given by rapid IV injection to 4 horses. Plasma concentrations of the drug peaked at 10 micrograms/ml and decreased rapidly at first, and then more slowly, with an apparent beta-phase half-life of 18.2 hours. Urinary concentrations of caffeine were remarkably consistent at about 3 times plasma values of the drug. Caffeine was detectable in both plasma and urine of the horses for up to 9 days after dosing. After oral administration, caffeine was absorbed poorly with an apparent bioavailability of 39%. Although blood concentrations of caffeine peaked rapidly after oral adm...
Some effects of chronic mercuric chloride intoxication on renal function in a horse.
Veterinary and human toxicology    December 1, 1982   Volume 24, Issue 6 415-420 
Roberts MC, Seawright AA, Ng JC, Norman PD.Chronic mercuric chloride intoxication in an aged horse given 0.8 mg Hg/kg/day for 14 weeks was manifest by signs of progressive respiratory difficulty and renal disease. The effects were not self-limiting after mercury was withdrawn, and the animal was destroyed six weeks later. Renal function changes included heavy glycosuria, modest proteinuria, phosphaturia, reduced urine osmolality, gradually increasing urine production, reduced glomerular filtration rate, and terminally, azotemia. The condition bore similarities to the Fanconi syndrome in man. Urinary gamma-glutamyl transpeptidase, alkal...
The use of capillary column gas chromatography and negative ion chemical ionization mass spectrometry to confirm the administration of synthetic corticosteroids to horses.
Biomedical mass spectrometry    November 1, 1982   Volume 9, Issue 11 459-465 doi: 10.1002/bms.1200091102
Houghton E, Teale P, Dumasia MC, Wellby JK.The negative ion chemical ionization mass spectra of the MO-TMS derivatives of the corticosteroids prednisolone, betamethasone and dexamethasone have been obtained using capillary column gas chromatography mass spectrometry. The spectra showed abundant diagnostic ions at m/z greater than 300 allowing for clear discrimination between the three steroid derivatives. A capillary column gas chromatographic mass spectrometric method using negative ion chemical ionization mass spectrometry has been developed to confirm the presence of the parent steroids in horse urine following the administration of...
3-Hydroxy- and 3-keto-3-phenylpropionic acids: novel metabolites of benzoic acid in horse urine.
Biochemical pharmacology    October 15, 1982   Volume 31, Issue 20 3225-3230 doi: 10.1016/0006-2952(82)90554-8
Marsh MV, Caldwell J, Hutt AJ, Smith RL, Horner MW, Houghton E, Moss MS.The metabolism of benzoic acid has been examined in the horse, using 14C- and deuterium-labelled compounds. Chromatographic analysis of the urine showed the presence of hippuric acid, benzoyl glucuronide and benzoic acid and a discrete band which accounted for 2% of the dose administered. This material was isolated by solvent extraction and HPLC and, following treatment with diazomethane, examined by GC/MS. The major component of this fraction was 3-hydroxy-3-phenylpropionic acid methyl ester, which was accompanied by very much smaller amounts of cinnamic acid methyl ester and acetophenone. Th...
Pharmacodynamic and pharmacokinetic properties of diazepam in horses.
American journal of veterinary research    October 1, 1982   Volume 43, Issue 10 1756-1762 
Muir WW, Sams RA, Huffman RH, Noonan JS.The cardiopulmonary, behavioral, and pharmacokinetic properties of diazepam were determined in horses. Heart rate, cardiac output, mean pulmonary artery, aortic and right atrial blood pressures, respiratory rate, and arterial pH and blood gas values did not change after IV diazepam (0.05, 0.1, 0.2, 0.4 mg/kg) administration. Increasing doses of diazepam resulted in signs of muscle weakness including fixed stance, muscle fasciculations of the head, neck, and thorax muscles, ataxia, and then recumbency. Dosages of diazepam exceeding 0.2 mg/kg produced mild sedation. Behavioral changes persisted ...
The effect of ethacrynic acid, bumetanide, frusemide, spironolactone and ADH on electrolyte excretion in ponies.
Journal of veterinary pharmacology and therapeutics    September 1, 1982   Volume 5, Issue 3 153-160 doi: 10.1111/j.1365-2885.1982.tb00426.x
Alexander F.The effect of ethacrynic acid, bumetanide, frusemide, spironolactone and anti-diuretic hormone (ADH) on the urinary and faecal excretion of water and electrolytes by ponies was studied. Ethacrynic acid, bumetanide, and frusemide given intravenously, increased urinary sodium excretion, and, excepting frusemide, decreased faecal sodium excretion. Given by stomach tube ethacrynic acid reduced urinary and faecal sodium. Bumetanide, given intravenously, spironolactone, frusemide and ADH increased urinary sodium and all except frusemide intravenously decreased faecal sodium regardless of route of ad...
Effects of nandrolone phenylpropionate in the horse: (2) general effects in animals undergoing training.
Equine veterinary journal    July 1, 1982   Volume 14, Issue 3 224-228 doi: 10.1111/j.2042-3306.1982.tb02400.x
Snow DH, Munro CD, Nimmo MA.The effect of 11 weekly injections of nandrolone phenylpropionate (400 mg) was investigated by a crossover trial (2 training periods) in 6 Thoroughbred geldings undergoing training. A decrease in body weight and flank measurement occurred only during the first training period and was not modified by the anabolic steroid. Urinary nitrogen excretion was lower in the anabolic treated animals only in the first training period. Neither training nor training plus nandrolone phenylpropionate administration caused any marked alteration in blood biochemistry or haematology. A significant decrease in pl...
Plasma concentrations and urinary excretion of nandrolone and/or its metabolites after intramuscular injection of nandrolone phenylpropionate to horses.
Equine veterinary journal    July 1, 1982   Volume 14, Issue 3 213-218 doi: 10.1111/j.2042-3306.1982.tb02397.x
Chapman DI, Close PM, Moss MS, Snow DH.A radioimmunological method was used as a screening procedure to determine the period of detection or "clearance time", for the horse, of therapeutic doses of the synthetic anabolic steroid nandrolone phenylpropionate. Seven horses, either at rest or being exercised, were given a course of weekly intramuscular injections of the steroid. On the separate occasion, some of the horses were given a single intramuscular injection of the same compound. The weekly injections maintained a high plasma concentration of nandrolone and/or metabolites. The mean (+/- sd) period of detection in plasma of thes...
Gentamicin sulfate in the horse: serum, synovial, peritoneal, and urine concentrations after single dose intramuscular administration.
Journal of veterinary pharmacology and therapeutics    June 1, 1982   Volume 5, Issue 2 119-122 doi: 10.1111/j.1365-2885.1982.tb00506.x
Brown MP, Stover SM, Kelly RH, Farver TB.Ten healthy adult mares were given a single intramuscular dose (2.2 mg/kg) of gentamicin sulfate. Over a 48-h period, gentamicin concentrations were measured serially in the serum of all ten mares and in synovial fluid, peritoneal fluid, and urine of six of the mares. The mean peak serum gentamicin concentration was 5.73 micrograms/ml at 1 h. Gentamicin was detected in synovial fluid and peritoneal fluid, with mean peak gentamicin concentrations of 2.41 micrograms/ml and 3.92 micrograms/ml, respectively, observed at 2 h. These concentrations declined in parallel with serum concentrations and w...
Diagnosing azotemia in horses.
Journal of the American Veterinary Medical Association    May 1, 1982   Volume 180, Issue 9 980-982 
Easley R.No abstract available
Alterations in blood, sweat, urine and muscle composition during prolonged exercise in the horse.
The Veterinary record    April 17, 1982   Volume 110, Issue 16 377-384 doi: 10.1136/vr.110.16.377
Snow DH, Kerr MG, Nimmo MA, Abbott EM.No abstract available
An examination of the calcium and phosphorus nutrition of thoroughbred racehorses.
Australian veterinary journal    April 1, 1982   Volume 58, Issue 4 132-135 doi: 10.1111/j.1751-0813.1982.tb00622.x
Caple IW, Bourke JM, Ellis PG.The calcium and phosphorus nutrition of thoroughbred racehorses was assessed by analysis of serum and urine samples collected from 90 horses in 1975 and 139 horses in 1980-81 at racetracks in Melbourne. Horses that were excreting greater than 15 mumole Ca/mosmole and which had a calcium to creatinine clearance ratio greater tha 2.5% were considered to have adequate Ca intake. Horses that were excreting greater than 15 mumole P/mosmole and which had a phosphorus to creatinine clearance ratio greater than 4% were considered to have excessive phosphorus intake. Sixty-percent of the horses sampled...
[Studies on thin-layer stick chromatography. IV. Screening procedure for doping drugs from urine of race horses].
Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan    April 1, 1982   Volume 102, Issue 4 335-342 doi: 10.1248/yakushi1947.102.4_335
Kawanabe K.No abstract available
1 25 26 27 28 29 31