Showing posts with label Digestive < Ruminants. Show all posts
Showing posts with label Digestive < Ruminants. Show all posts
Monday, November 30, 2015
Video - Vaginal Prolapse in Cattle
vet,field,poultry,ruminant,equine
Cases,
Digestive < Ruminants,
Field,
Reproductive System,
Video
Thursday, October 08, 2015
Rumen Acidosis - Impaction
Rumen acidosis is a metabolic disease of cattle. Like most
metabolic diseases it is important to remember that for every cow that shows
clinical signs, there will be several more which are affected sub-clinically.
Acidosis is said to occur when the pH of the rumen falls to less than 5.5 (normal is 6.5 to 7.0). In many cases the pH can fall even lower. The fall in pH has two effects. Firstly, the rumen stops moving, becoming atonic. This depresses appetite and production.
Secondly, the change in acidity changes the rumen flora, with acid-producing bacteria taking over. They produce more acid, making the acidosis worse. The increased acid is then absorbed through the rumen wall, causing metabolic acidosis, which in severe cases can lead to shock and death.
Acidosis is said to occur when the pH of the rumen falls to less than 5.5 (normal is 6.5 to 7.0). In many cases the pH can fall even lower. The fall in pH has two effects. Firstly, the rumen stops moving, becoming atonic. This depresses appetite and production.
Secondly, the change in acidity changes the rumen flora, with acid-producing bacteria taking over. They produce more acid, making the acidosis worse. The increased acid is then absorbed through the rumen wall, causing metabolic acidosis, which in severe cases can lead to shock and death.
Cause
The primary cause of acidosis is feeding a high level of
rapidly digestible carbohydrate, such as barley and other cereals. Acute
acidosis, often resulting in death, is most commonly seen in ‘barley beef’
animals where cattle have obtained access to excess feed. In dairy cattle, a
milder form, sub-acute acidosis, is seen as a result of feeding increased
concentrates compared to forage.
Symptoms
Acute acidosis
often results in death, although illness and liver abscesses may be seen before
hand. Cattle may become depressed, go off feed, have an elevated heart rate or
diarrhea.
Sub-acute:
Sub-acute:
- Reduced feed intake
- Poor body condition and weight loss
- Unexplained diarrhoea
- Increase body Temp
- Pulse rate and respiratory rate may rise
- Lethargy
Treatment
Acc. To case :
·
Isotonic
sod. Bicarbonate I\V
·
Sod.
Bicarbonate
·
Anti-histaminic
·
Laxatives
·
Anti-pyretics
·
antibiotic
Prevention
The key to prevention is reducing the amount of readily
fermentable carbohydrate consumed at each meal. This requires both good diet
formulation (proper balance of fiber and nonfiber carbohydrates) and excellent
feed bunk management. Animals consuming well-formulated diets remain at high
risk for this condition if they tend to eat large meals because of excessive
competition for bunk space or following periods of feed deprivation.
Feeding excessive quantities of concentrate and insufficient forage results in a fiber-deficient ration likely to cause subacute ruminal acidosis. The same situation may be seen during the last few days before parturition if the ration is fed in separate components.
Including long-fiber particles in the diet reduces the risk of subacute ruminal acidosis by encouraging saliva production during chewing and by increasing rumination after feeding. However, long-fiber particles should not be easily sorted away from the rest of the diet; this could delay their consumption until later in the day or cause them to be refused completely.
Ruminant diets should also be formulated to provide adequate buffering. This can be accomplished by feedstuff selection and/or by the addition of dietary buffers such as sodium bicarbonate or potassium carbonate. Dietary anion-cation difference is used to quantify the buffering capacity of a diet.
Supplementing the diet with direct-fed microbials that enhance lactate utilizers in the rumen may reduce the risk of subacute ruminal acidosis. Yeasts, propionobacteria, lactobacilli, and enterococci have been used for this purpose. Ionophore (eg, monensin sodium) supplementation may also reduce the risk by selectively inhibiting ruminal lactate producers.
Feeding excessive quantities of concentrate and insufficient forage results in a fiber-deficient ration likely to cause subacute ruminal acidosis. The same situation may be seen during the last few days before parturition if the ration is fed in separate components.
Including long-fiber particles in the diet reduces the risk of subacute ruminal acidosis by encouraging saliva production during chewing and by increasing rumination after feeding. However, long-fiber particles should not be easily sorted away from the rest of the diet; this could delay their consumption until later in the day or cause them to be refused completely.
Ruminant diets should also be formulated to provide adequate buffering. This can be accomplished by feedstuff selection and/or by the addition of dietary buffers such as sodium bicarbonate or potassium carbonate. Dietary anion-cation difference is used to quantify the buffering capacity of a diet.
Supplementing the diet with direct-fed microbials that enhance lactate utilizers in the rumen may reduce the risk of subacute ruminal acidosis. Yeasts, propionobacteria, lactobacilli, and enterococci have been used for this purpose. Ionophore (eg, monensin sodium) supplementation may also reduce the risk by selectively inhibiting ruminal lactate producers.
vet,field,poultry,ruminant,equine
Digestive,
Digestive < Ruminants,
Nutritional Diseases,
Ruminant
Bloat in Ruminant
Bloat is simply the accumulation of gas in the rumen. This
gas is produced as part of the normal process of digestion, and is normally
lost by eructation. Bloat occurs when this loss of gas is prevented.
There are two sorts of bloat. The least common type is gassy
bloat, which occurs when the gullet is obstructed (often by foreign objects
such as potatoes) or when the animal can’t burp (such as with milk fever or
tetanus).
The second type of bloat is frothy bloat, which happens as
the result of a stable foam developing on top of the rumen liquid, which blocks
the release of the gas. This is by far the most common form of bloat, and
unlike gassy bloat, it is highly seasonal with peaks in the spring and autumn.
This is because the foam is formed by breakdown products from rapidly growing
forages (particularly legumes such as clover and alfalfa). These increase the
viscosity (stickiness) of the rumen fluid and prevent the small bubbles of gas
formed by rumen fermentation from coming together to form free gas that can be
belched off
Clinical Signs
- Distended left abdomen is the most obvious sign
- Usually associated with pain, discomfort, and bellowing.
- Death can occur within 2hrs after the development of bloat
- Gaseous bloat is usually seen in one or two animals. Frothy bloat can affect up to 25% of cases
- In some cases sudden death may be the first sign seen
Diagnosis
- Clinical signs
- History of access to lush pasture
- Passing a stomach tube will distinguish between gassy and frothy bloat. If it’s gassy bloat a stomach tube passed into the rumen will allow the gas build-up to escape through the tube. No such gas is seen in frothy bloat.
Treatment
- Passing a stomach tube is the best treatment for gassy bloat. Once the gas has been released, the cause of the obstruction should be looked for.
- In a few cases a trochar and cannula punched through the side into the rumen will relieve gassy bloat when a stomach tube has not worked. But such cases are rare, and as the trochar provides a tremendous opportunity for introduction of infection, it should only be used as a last resort.
- For frothy bloat, antifoaming agents that disperse the foam should be given by stomach tube. Old-fashioned remedies such as linseed oil and turpentine are effective but newer treatments such as dimethicone or polaxolene are easier to give as the effective dose is much smaller.
- Injection of anti-histaminic drug
- If an outbreak of frothy bloat occurs all cattle on that pasture should be removed immediately and put onto a high fibre diet (hay or straw), and any cows showing bloating signs treated with an anti-foaming agent. The pasture should not be grazed for at least ten days.
vet,field,poultry,ruminant,equine
Cattle,
Digestive,
Digestive < Ruminants,
Ruminant
Anatomy of the Digestive System
Digestive system is uniquely constructed to perform its specialized function of turning food into the energy you need to survive and packaging the residue for waste disposal..
Mouth
The mouth is the beginning of the digestive
tract; and, in fact, digestion starts here when taking the first bite
of food. Chewing breaks the food into pieces that are more easily
digested, while saliva mixes with food to begin the process of breaking
it down into a form your body can absorb and use.
Esophagus
Located in throat near trachea (windpipe), the esophagus receives food
from mouth when swallowing. By means of a series of muscular
contractions called peristalsis, the esophagus delivers food to the
stomach.
Stomach
The stomach is a hollow organ, or "container," that holds food while it is being mixed with enzymes that continue the process of breaking down food into a usable form. Cells in the lining of the stomach secrete a strong acid and powerful enzymes that are responsible for the breakdown process. When the contents of the stomach are sufficiently processed, they are released into the small intestine.
simple stomach of Horse
Compound stomach of Cattle
Small intestine
Made up of three segments — the duodenum, jejunum, and ileum — the small intestine is a 22-foot long muscular tube that breaks down food using enzymes released by the pancreas and bile from the liver. Peristalsis also is at work in this organ, moving food through and mixing it with digestive secretions from the pancreas and liver. The duodenum is largely responsible for the continuous breaking-down process, with the jejunum and ileum mainly responsible for absorption of nutrients into the bloodstream.
Contents of the small intestine start out semi-solid, and end in a liquid form after passing through the organ. Water, bile, enzymes, and mucous contribute to the change in consistency. Once the nutrients have been absorbed and the leftover-food residue liquid has passed through the small intestine, it then moves on to the large intestine, or colon.
Pancreas
The pancreas secretes digestive enzymes into the duodenum, the first segment of the small intestine. These enzymes break down protein, fats, and carbohydrates. The pancreas also makes insulin, secreting it directly into the bloodstream. Insulin is the chief hormone for metabolizing sugar.
Liver
The liver has multiple functions, but its main function within the digestive system is to process the nutrients absorbed from the small intestine. Bile from the liver secreted into the small intestine also plays an important role in digesting fat. In addition, the liver is the body’s chemical "factory." It takes the raw materials absorbed by the intestine and makes all the various chemicals the body needs to function. The liver also detoxifies potentially harmful chemicals. It breaks down and secretes many drugs.
Gallbladder
The gallbladder stores and concentrates bile, and then releases it into the duodenum to help absorb and digest fats.
Colon .. large intestine
The colon is a 6-foot long muscular tube that connects the small intestine to the rectum. The large intestine is made up of the cecum, the ascending (right) colon, the transverse (across) colon, the descending (left) colon, and the sigmoid colon, which connects to the rectum. The appendix is a small tube attached to the cecum. The large intestine is a highly specialized organ that is responsible for processing waste so that emptying the bowels is easy and convenient.
Stool, or waste left over from the digestive process, is passed through the colon by means of peristalsis, first in a liquid state and ultimately in a solid form. As stool passes through the colon, water is removed. Stool is stored in the sigmoid (S-shaped) colon until a "mass movement" empties it into the rectum once or twice a day. It normally takes about 36 hours for stool to get through the colon. The stool itself is mostly food debris and bacteria. These bacteria perform several useful functions, such as synthesizing various vitamins, processing waste products and food particles, and protecting against harmful bacteria. When the descending colon becomes full of stool, or feces, it empties its contents into the rectum to begin the process of elimination.
Rectum
The rectum (Latin for "straight") is an 8-inch chamber that connects the colon to the anus. It is the rectum's job to receive stool from the colon, to let the person know that there is stool to be evacuated, and to hold the stool until evacuation happens. When anything (gas or stool) comes into the rectum, sensors send a message to the brain. The brain then decides if the rectal contents can be released or not. If they can, the sphincters relax and the rectum contracts, disposing its contents. If the contents cannot be disposed, the sphincter contracts and the rectum accommodates so that the sensation temporarily goes away.
Anus
The anus is the last part of the digestive tract. It is a 2-inch long canal consisting of the pelvic floor muscles and the two anal sphincters (internal and external). The lining of the upper anus is specialized to detect rectal contents. It lets you know whether the contents are liquid, gas, or solid. The anus is surrounded by sphincter muscles that are important in allowing control of stool. The pelvic floor muscle creates an angle between the rectum and the anus that stops stool from coming out when it is not supposed to. The internal sphincter is always tight, except when stool enters the rectum. It keeps us continent when we are asleep or otherwise unaware of the presence of stool. When we get an urge to go to the bathroom, we rely on our external sphincter to hold the stool until reaching a toilet, where it then relaxes to release the contents.
vet,field,poultry,ruminant,equine
Anatomy,
Cattle,
Digestive < Ruminants,
Physiology,
Undergraduate
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