Analyze Diet

Topic:Digestive Tract

The digestive tract in horses is a complex system responsible for the breakdown and absorption of nutrients essential for maintaining equine health. It includes several key components: the mouth, esophagus, stomach, small intestine, cecum, large colon, small colon, and rectum. Each segment of the digestive tract performs specific functions, from the mechanical breakdown of feed to the enzymatic digestion and absorption of nutrients. The horse's digestive system is uniquely adapted to process fibrous plant material, relying heavily on microbial fermentation, particularly in the hindgut. This page compiles peer-reviewed research studies and scholarly articles that explore the anatomy, physiology, and function of the equine digestive tract, as well as common disorders and their management.
Weight loss and the digestive system in the horse: a problem specific data base.
The Veterinary clinics of North America. Large animal practice    November 1, 1979   Volume 1, Issue 2 237-249 doi: 10.1016/s0196-9846(17)30182-9
Coffman JR, Hammond LS.No abstract available
Motor events in equine large colon.
The American journal of physiology    November 1, 1979   Volume 237, Issue 5 E457-E464 doi: 10.1152/ajpendo.1979.237.5.E457
Sellers AF, Lowe JE, Brondum J.The equine large colon is the major cellulose-fermentation locus of these species. The area of juncture of the ventral and dorsal divisions of the equine large colon was characterized, in 13 chronic unanesthetized animals and in 25 in vitro preparations, as an area of resistance to aboral flow. This is a probable pacemaker area. The reservoir function of this part of the colon is apparently facilitated by the presence of a pacemaker at this level. There was a general rise in recorded intraluminal pressure peaks during the first hour of feeding. This characteristic was not altered after resecti...
Nitrous oxide: effect on accumulation rate and uptake of bowel gases.
Anesthesia and analgesia    September 1, 1979   Volume 58, Issue 5 405-408 doi: 10.1213/00000539-197909000-00012
Steffey EP, Johnson BH, Eger EI, Howland D.Breathing 79% nitrous oxide (N2O) in oxygen increased the rate of accumulation of bowel gas during intraluminal bowel segment infusions of hydrogen, methane (CH4), air, or carbon dioxide (CO2) in four pentobarbital-anesthetized dogs more than did breathing 100% oxygen. A N2O-associated increase in the volume of naturally produced intestinal gas in five halothane-anesthetized ponies corroborated the findings in the dog studies. In a second group of four dogs a bolus of CH4 or CO2 was injected into the bowel lumen. When the dogs breathed O2 the bowel gas volume decreased. Gas was virtually absen...
[Importance of fodder and feeding technic in colic of the horse].
Tierarztliche Praxis    January 1, 1979   Volume 7, Issue 2 221-227 
Meyer H.No abstract available
[Methods of studying the biology and physiology of the digestive processes in agricultural animals].
Veterinarno-meditsinski nauki    January 1, 1979   Volume 16, Issue 6 3-8 
Ganovski Kh.No abstract available
Cube colic.
Journal of the South African Veterinary Association    December 1, 1978   Volume 49, Issue 4 317-319 
Irwin DH, Howell DW."Cube colic" is described and vain attempts to cause the problem on an experimental basis are recorded. It is concluded that not all horses are susceptible to cube colic and if colic occurs in horses being fed on cubes, it is not necessarily due to feeding of cubes. Nomenclature of bowel disorders is considered.
Physiology of diarrhea–large intestine.
Journal of the American Veterinary Medical Association    September 1, 1978   Volume 173, Issue 5 Pt 2 667-672 
Argenzio RA.No abstract available
Comparative physiology of the hindgut and its nutritional significance.
Journal of animal science    June 1, 1978   Volume 46, Issue 6 1800-1802 doi: 10.2527/jas1978.4661800x
Bayley HS.The research article explores the comparative physiology of the hindgut in different animals, its key processes, and its implications on nutrition. It underscores the significance of gut microorganisms in breakdown […]
Digestion and absorption in the hindgut of nonruminant herbivores.
Journal of animal science    June 1, 1978   Volume 46, Issue 6 1803-1807 doi: 10.2527/jas1978.4661803x
Hintz HF, Schryver HF, Stevens CE.No abstract available
Nutritional problems in horses.
Modern veterinary practice    May 1, 1978   Volume 59, Issue 5 395-396 
No abstract available
Interrelationship of Na, HCO3, and volatile fatty acid transport by equine large intestine.
The American journal of physiology    December 1, 1977   Volume 233, Issue 6 E469-E478 doi: 10.1152/ajpendo.1977.233.6.E469
Argenzio RA, Southworth M, Lowe JE, Stevens CE.No abstract available
Effect of diet on cecal pH and feeding behavior of horses.
Journal of animal science    July 1, 1977   Volume 45, Issue 1 87-93 doi: 10.2527/jas1977.45187x
Willard JG, Willard JC, Wolfram SA, Baker JP.Three cecal-fistulated horses were used in a 3 × 3 latin square experiment to determine the influence of diet and of cecal infusions of Na2C03 on cecal fermentation and feeding behavior. The three treatments were hay, concentrate and concentrate plus hourly infusions of Na2CO3. Cecal fluid samples and cecal pH readings were taken at zero through 11 hr following feeding at the end of each experimental period, and animal activity was measured by the use of a movie camera set to take 5 sec of film every 5 minutes. Cecal pH was significantly lower at 4, 5 and 6 hr following feeding for the horses...
Colic colloquy.
Modern veterinary practice    June 1, 1977   Volume 58, Issue 6 543-547 
No abstract available
[Functional significance of the gallbladder?].
Anatomia, histologia, embryologia    June 1, 1977   Volume 6, Issue 2 105-118 doi: 10.1111/j.1439-0264.1977.tb00426.x
Salamanca ME, Salazar I.No abstract available
Digestive tract problems in horses.
Modern veterinary practice    January 1, 1977   Volume 58, Issue 1 76-82 
No abstract available
[Cochliatoxum periachtum Gassovsky, 1919, entodinimorphic Ciliate of the horse digestive tract].
La Cellule    January 1, 1977   Volume 72, Issue 1-2 5-25 
Meuleman A, Latteur B.The topography of Cochliatoxum periachtum is studied. The cuticle is very thick. The digestive, nuclear and excretory systems are located in the ectoplasm, they are not surrounded by the mesoplasm. The endoplasm is very large, it contains vegetable inclusions. By the features of its topography, this species is similar to some species belonging to the Family Ophryoscolescidae and, especially, to Eudiplodinium giganteum.
[Gastric juice–an effective drug].
Veterinariia    November 1, 1976   Issue 11 28-29 
Malysheva NI, Dieva VT, Divina EG, Chuklov NF, Mengel' IV.No abstract available
Comparison of three techniques for intestinal anastomosis in Equidae.
Journal of the American Veterinary Medical Association    July 15, 1976   Volume 169, Issue 2 208-212 
Reinertson EL.Thirteen horses and ponies were used to evaluate an anastomotic technique utilizing a modified Gambee suture pattern. The modified Gambee technique was compared with a single-row everting technique and a double-row inverting technique. The double-row inverting technique predisposed to intestinal obstruction and resulted in minimal adhesions. The everting technique predisposed to leakage of intestinal contents and subsequent peritonitis. Adhesions were formed at the site of the anastomosis to such an extent as to jeopardize the proper position of the bowel. The technique did not cause any lumin...
Measurement of volatile fatty acid production rates in the cecum of the pony.
Journal of animal science    June 1, 1976   Volume 42, Issue 6 1465-1470 doi: 10.2527/jas1976.4261465x
Glinsky MJ, Smith RM, Spires HR, Davis CL.Three experiments, each utilizing three ponies, were conducted using a mixed VFA solution of [1−14C] acetate, [1−14C] propionate and [2–33H] butyrate to determine VFA production rates in the cecum of the pony. Diet A used in experiment 1, contained a forage to grain ratio of 1:2, while diet B, used in experiments 2 and 3, contained a forage to grain ratio of 3:1. Experiment 1, in which a constant infusion technique was used, resulted in net VFA production rates (mmoles/min) of 3.667 to 3.977 (x̄=3.836) for acetate, .410 to 1.664 (x̄=1.213) for propionate and .342 to 1.124 (x̄=.629) fo...
Letter: Laminitis in ponies.
The Veterinary record    January 24, 1976   Volume 98, Issue 4 77-78 doi: 10.1136/vr.98.4.77
Jones M.No abstract available
[Esential comparative, morphological and topographical differences and characteristics of the cecum in man and domestic animals].
Acta anatomica    January 1, 1976   Volume 94, Issue 2 299-310 
Simić V, Ilić A.The caecum in man as a part of the large colon (intestinum crassum) differs morphologically and topographically from the caecum of domestic mammals. The caecum in domestic mammals differs not only from the human caecum but also comparatively morphologically and topographically among the domestic mammals. The appendix vermiformis does not exist in domestic mammals, which represents the main difference between the human caecum and that of domestic mammals. There are certainly some differences in the physiological function of the caecum in man and the caecum in domestic mammals, which are carnivo...
Nitrogen utilization within equine large intestine.
The American journal of physiology    October 1, 1975   Volume 229, Issue 4 1062-1067 doi: 10.1152/ajplegacy.1975.229.4.1062
Wootton JF, Argenzio RA.The distribution of nitrogen in ligated segments of the stomach and intestine of two groups of ponies has been examined at sacrifice 2, 4, 8, and 12 h following the final 12-h scheduled feeding of diets designed to provide either 1) ample protein, or 2) limited protein plus supplemental urea as the major nitrogen source. Concentrations and total quantities of total N, NH3, urea plus NH3, and alpha-amino N were determined, and protein N was calculated by difference. Liquid marker (PEG) distribution rate constants and N concentrations were used to calculate rates of entry and exit by digesta flo...
Small colon impaction and rupture into the colic mesentery in a horse (a case history).
Veterinary medicine, small animal clinician : VM, SAC    September 1, 1975   Volume 70, Issue 9 1097-1100 
Merritt FD, Pickering LA, Bergevin JD.No abstract available
Effect of oral or caecal administration of protein supplements on equine plasma amino acids.
The British veterinary journal    July 1, 1975   Volume 131, Issue 4 466-473 
Reitnour CM, Salsbury RL.No abstract available
Functions of the equine large intestine and their interrelationship in disease.
The Cornell veterinarian    July 1, 1975   Volume 65, Issue 3 303-330 
Argenzio RA.No abstract available
Malabsorption in the horse associated with alimentary lymphosarcoma.
Equine veterinary journal    July 1, 1975   Volume 7, Issue 3 166-172 doi: 10.1111/j.2042-3306.1975.tb03259.x
Roberts MC, Pinsent PJ.Three horses suffering from malabsorption were shown to have alimentary lymphosarcoma predominantly affecting the small intestine and the associated lymph nodes. The diffuse cellular infiltration in two of the case produced marked changes in the villous architecture reducing the available mucosal surface area, and, with lowered or barely detectable disaccharidase activities, contributed to the impairment of digestive-absorptive processes. One of the horses maintained a voracious appetite and was not diarrhoeic, but failed to gain weight, indicating differences in the production and utilisation...
Recent research into the nutrition of the horse.
Equine veterinary journal    July 1, 1975   Volume 7, Issue 3 120-130 doi: 10.1111/j.2042-3306.1975.tb03247.x
Frape DL.The majority of recent experiments in equine nutrition relates to the metabolism of protein, non-protein nitrogen, carbohydrate, calcium and phosphorus. An understanding of the significance of the nitrogen cycle is emerging in which there is a two-way movement of compounds across the wall of the G.I. tract. Some quantitative estimates of the role of microflora in this process have been made for comparison with similar processes in ruminants. However, the pathway by which the microflora contributes to the nitrogen economy and the extent to which this occurs is not established in the horse. It i...
Influence of distillers feeds on digestion in the equine.
Journal of animal science    June 1, 1975   Volume 40, Issue 6 1086-1090 doi: 10.2527/jas1975.4061086x
Leonard TM, Baker JP, Willard J.No abstract available
Cyclic changes in ionic composition of digesta in the equine intestinal tract.
The American journal of physiology    April 1, 1975   Volume 228, Issue 4 1224-1230 doi: 10.1152/ajplegacy.1975.228.4.1224
Argenzio RA, Stevens CE.Effects of diet and time after feeding on osmolality and inorganic ion content of gastrointestinal digesta were studied in 24 ponies. Animals, fed either a conventional or a low-protein, high-cellulose diet, were sacrificed 2, 4, 8, or 12 h after a meal. Animals fed the conventional diet showed cyclic variations in the ionic composition and osmolality of digesta with time after feeding. The most marked variations were seen in the contents of the stomach and small colon. However, results also indicated a cyclic appearance and disappearance of Na in large intestinal contents that correlated with...
Post stress diarrhoea in the horse.
The Veterinary record    March 22, 1975   Volume 96, Issue 12 267-270 doi: 10.1136/vr.96.12.267
Owen R.No abstract available