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Eructation of gas through the gastroesophageal sphincter before and after gastric fundectomy in dogs.

The gas eructation function of the gastroesophageal sphincter (GES) was investigated in 6 conscious, fed dogs before and after gastric fundectomy. Using a perfused 4-lumen catheter with a Dent sleeve, gastric and GES pressures were measured. To induce eructation, nitrogen gas was insufflated (440 ml/min) into the stomach through one channel of the catheter. After base-line studies were completed on each dog, fundectomy, to remove 30% of the stomach, was performed. Mean (+/- SEM) GES pressure was 45.3 +/- 3.3 mm of Hg before fundectomy and 41.4 +/- 1.9 mm of Hg after fundectomy (P greater than 0.05). Before fundectomy, treatment with metoclopramide or cisapride increased GES pressure to 62.2 +/- 4.1 mm of Hg (P less than 0.001) and 61.1 +/- 5.0 mm of Hg (P less than 0.05), respectively. Gastric contraction rates were the same, 4.92 +/- 0.24/min and 4.80 +/- 0.16/min before and after fundectomy, respectively. During insufflation, gastric pressures before eructation increased to 12.2 +/- 1.3 mm of Hg before fundectomy and to 13.6 +/- 0.9 mm of Hg after fundectomy (P greater than 0.05). Eructation occurred at intervals of 1.44 +/- 0.20 minutes before fundectomy and 1.56 +/- 0.13 minutes after fundectomy (P greater than 0.05). Before fundectomy, administration of metoclopramide or cisapride resulted in eructation intervals of 1.72 +/- 0.21 minutes and 1.39 +/- 0.02 minutes, respectively; these intervals were not significantly different from those measured in dogs not given drugs. After fundectomy, the GES pressure in 5 dogs decreased and remained low during insufflation. After a series of normal eructation intervals, multiple eructations were observed in 4 of these dogs. Fundectomy did not impair ability to eructate gas from the stomach.

Animals

Pressure profile along the oesophagus during eructation in sheep.

The pressure profile along the oesophagus was recorded simultaneously with the flow rate of eructated gas in sheep to evaluate the oesophageal motor events leading to the relief of gas. All the eructation sequences started by a rise followed by a plateau of oesophageal pressure. The passage of gas at the tracheal level occurred during this plateau and not during the consecutive transient lowering of the oesophageal pressure. All eructation sequences ended by a peristaltic contraction of the oesophagus. The flow rate pattern of gas during eructation was affected by head position leading to different tensions of the oesophagus. We conclude that, despite the large volume of eructated gases, the eructation process is not significantly different in sheep compared to other animals. Therefore, by virtue of its unique physiological particularity, the sheep might be used as an experimental model for the evaluation of lower oesophageal sphincter (LOS) competence.

Animals

Eructation of gas through the gastroesophageal sphincter before and after limiting distension of the gastric cardia or infusion of a beta-adrenergic amine in dogs.

Gas eructation function of the gastroesophageal sphincter (GES) was investigated in 6 conscious dogs before and after a sleeve was placed around the GES and gastric cardia and during IV infusion of a beta-adrenergic amine (epinephrine). To induce eructation, nitrogen gas was insufflated (351.4 +/- 2 ml/min; mean +/- SEM) into the stomach through 1 channel of a 4-lumen catheter. After baseline studies and epinephrine infusion studies were completed in each dog, surgery was done to limit partially gastric distension by intraluminal contents by placing a silicone rubber sleeve around the GES and the first few centimeters of the cardia. Gastroesophageal sphincter pressure was 31.8 +/- 2.2 mm of Hg in baseline studies, 17.3 +/- 1.3 mm of Hg during epinephrine infusion (P. less than 0.003), and 30.3 +/- 2.2 mm of Hg after the sleeve was placed around the GES and cardia. During insufflation, gastric pressures before eructation increased to 5.74 +/- 0.41 mm of Hg before and to 15.15 +/- 1.63 mm of Hg after cardia sleeve placement (P less than 0.001). Eructation occurred at intervals of 1.83 +/- 0.41 minutes before cardia sleeve placement, and eructations were not observed with the sleeve in place. Before the sleeve was placed, administration of epinephrine resulted in an eructation interval of 0.84 +/- 0.09 minutes, which was significantly different from that in the same dogs given no drugs (P less than 0.004).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Eructation of gas through the gastroesophageal sphincter before and after truncal vagotomy in dogs.

The function of the gastroesophageal sphincter (GES) to eructate gas before and after vagotomy was investigated in conscious, fed dogs. Gastric and GES pressures were measured in 5 dogs, using a perfused 4-lumen catheter with a Dent sleeve. To induce eructation, nitrogen gas was insufflated (440 ml/min) into the stomach through 1 channel of the catheter. After base-line studies were completed on each dog, bilateral truncal vagotomy was performed 5 cm cranial to the diaphragm. Mean (+/- SE) GES pressure was 51.5 +/- 1 mm of Hg before vagotomy and 28 +/- 1.7 mm of Hg after vagotomy (P less than 0.001). Mean gastric contraction rates were the same, 4.91 +/- 0.11/min and 4.78 +/- 0.06/min in dogs before and after vagotomy, respectively. During insufflation, gastric pressures increased to 11.8 +/- 0.7 mm of Hg before eructation in dogs before vagotomy and to 18.4 +/- 0.8 mm of Hg in dogs after vagotomy (P less than 0.001). Eructation occurred at intervals of 1.79 +/- 0.09 minutes before vagotomy and 5.71 +/- 0.41 minutes after vagotomy (P less than 0.001). Atropine resulted in an interval of 1.98 +/- 0.18 minutes before vagotomy. Eructation was not seen in 2 dogs after vagotomy and was sometimes not seen in the 3 others. Gastroesophageal sphincter pressure in dogs before vagotomy began to decrease 4.5 +/- 0.2 s before the GES-pressure gradient disappeared, and GES pressure remained there for 5.3 +/- 0.3 s before the gradient began to return.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Alleviation of excessive gas accumulation in the ruminant stomach by ritanserin.

The relationships between forestomach motility and eructation rate were studied in sheep and cattle. Three ewes and 2 heifers were implanted with strain gauges on the reticulo-rumen and fitted with a cannula in the dorsal sac of the rumen. Studies were performed in sheep after induction of hypocalcemia by Na2EDTA infusion and cattle were studied after ruminal distension. Experiments were performed by measuring the rate and volume of eructated ruminal gases, using a technique by which the trachea is transected. The frequency of reticulo-ruminal contractions decreased 40% within 30 minutes of Na2EDTA infusion to the sheep. The volume of eructated gas (for 30-minute periods) decreased from 10.7 L to 5.5 L at the end of the 60-minute infusion period. Pretreatment with ritanserin (0.1 mg/kg, subcutaneously) not only prevented bloating during the ruminal stasis induced by hypocalcemia, but also significantly increased the eructated volume of gas. In cattle, ritanserin given at the same dose level (0.1 mg/kg, subcutaneously) significantly increased the volume of eructated gas after ruminal distension. This study supports the hypothesis that the caudal esophageal sphincter has a role in the rate of ruminal gas eructation and indicates that its relaxation may be due to a 5-hydroxytryptamine antagonist.

Animals

Bloat in sheep (Ovis aries).

1. Most of the field studies on bloat are conducted with cattle and most of the laboratory experiments seeking to explain the various parameters associated with bloat are done with sheep. 2. Based on grazing behaviour, it would be expected that sheep might bloat more severely than cattle because they selectively choose to eat leaves over stems and chew what they ingest more frequently than cattle. Furthermore, sheep appear to select legumes over grasses because the legumes can be eaten more rapidly. However, because they are selective, sheep eat more slowly than cattle. Despite a higher bloat expectation, bloating in sheep is reported to be less of a problem than in cattle. 3. Although frothing of rumen ingesta was described earlier in cattle as the cause of acute legume bloat, experiments with frothy bloat in sheep preceded those in cattle. 4. Anti-frothing agents were used in sheep before cattle to treat acute legume bloat. 5. Experiments devoted to the study of eructation in ruminants were carried out on sheep, then cattle. 6. Convincing evidence that rumen motility does not cease during acute legume bloat was gathered using sheep. 7. Although the transected tracheal technique for the determination of the volume of eructated gas was developed with cattle, the pathway of eructated gas was confirmed with sheep. 8. All the current evidence accumulated from experiments with sheep supports the hypothesis that death due to legume bloat is caused by acute neural, respiratory, and cardiovascular insult resulting from the effect of the distended rumen on thoracic viscera, diaphragm, intercostal muscles, and the abdominal vena cava. 9. Experiments with sheep and cattle being fed scabrous and nonscabrous diets similar in chemical composition show that sheep are more resistant than cattle to the increase in intrarumen pressure, decline in rumen contraction amplitude, and decrease in rumen contraction frequency caused by nonscabrous diets. 10. The sequence of events in the reticulorumen during primary and secondary contractions previously described following visual and palpation experiments with cattle was confirmed by the use of myoelectrodes implanted in the various sacs of the reticulorumen of sheep. 11. Elevated intrarumen pressure is associated with an increase in the frequency of primary (mixing) and secondary (eructation) contractions (more secondaries than primaries).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Symptomatic differentiation of duodenal from gastric fistulas in Crohn's disease.

Fistulization to the duodenum or stomach from a diseased segment of bowel in Crohn's disease is rare, with only 63 cases reported. We report an additional two cases of Crohn's disease with recurrent fistulization to the duodenum. Although one or both patients complained of pain, diarrhea, and/or weight loss at presentation, neither of them experienced vomiting or feculent eructation. A review of 46 of the 63 reported cases of gastric and duodenal fistulization indicated that patients with gastric fistulas commonly present with vomiting (39%), and with histories of feculent eructations or frank feculent vomiting (44%), but that patients with duodenal fistulas rarely present with vomiting (3.6%), and never have feculent vomiting or eructations. This difference is an important clue to the diagnosis and localization of upper gastrointestinal fistulas in Crohn's disease.

Adult

Ultrastructural study of the alveolar-capillary membrane and the tubular endoplasmic reticulum in alveolar type I cells of the caprine lung.

The ultrastructural features of alveolar type I cells of the goat lung were studied by using vascular perfusion and direct airway instillation of fixatives. The morphological features of smooth endoplasmic reticulum (SER) were characterized by measuring the diameter of individual SER tubules which conformed in size and appearance to the tubular endoplasmic reticulum (TER) already described in various types of epithelium. The TER appeared as large tubular aggregates in a palisade arrangement; these aggregates ramified into various areas of the extended cytoplasm of alveolar type I cells. The TER also existed as a mixture of short cisternae and vesicles, and glycogen alpha particles were present in the non-perikaryonic portion of the cell. The different forms of TER had varying relationships to the plasmalemma. The interchangable configurations seen in the structure of TER indicated the functional modalities of the cells and were comparable to similar structural modifications in electrolyte-secreting cells. The role of TER, microtubules, and large populations of endocytic vesicles in the alveolar type I cells in the goat lung is examined in the context of physiological eructation of rumenal gases and the absorption of electrolyte-rich fluids which escape into the lung at each eructation in ruminants.

Animals

Transdiaphragmatic pressure measurement in cattle: technical data.

Techniques and methods required for accurate and reproducible measurements of transdiaphragmatic pressure (Pdi), were studied in seven-week and five-month-old calves. Since reliable pleural pressure measurement in cattle has already been described, separate experiments were conducted to compare retrodiaphragmatic pressures measured (i) with balloon-catheters and needle catheters, (ii) before and after eructation and (iii) in the ruminal and in the peritoneal cavities. Whereas respiratory-induced pressure changes were equally transmitted throughout the rumen content, a marked anteroposterior damping was observed as the recording site in the abdominal cavity was moved away from the diaphragm (P < 0.0001). It was concluded that the most appropriate and accurate way to measure Pdi changes in polygastric animals is to measure the pressure changes existing in the mid-thoracic portion of the oesophagus and in the liquid content of the rumen with balloon-tubing units. Neither growth- and diet-related rumen enlargement nor eructation, which are two typical characteristics of ruminants, altered the reliability of retrodiaphragmatic pressure measurements in the two age groups studied.

Abdomen

The efficacy of bismuth subsalicylate in relieving gastro-intestinal discomfort following excessive alcohol and food intake.

The safety and efficacy of bismuth subsalicylate in relieving the symptoms of gastro-intestinal distress due to excess ingestion of food and drink were evaluated in a randomized, double-blind, placebo-controlled, parallel-group study. Of the 132 healthy adult volunteers who were encouraged to overindulge in food and drink during a simulated cocktail/dinner party, 91 (68.9%) experienced symptoms of gastric distress and of these 43 were randomly assigned to receive bismuth subsalicylate and 48 placebo. Subjects took the formulation as needed every 30-60 min, with a maximum of eight doses during the 24-h study period. Subjects who received bismuth subsalicylate had significantly superior relief (P less than 0.01) of the individual symptoms of nausea, sense of fullness, heartburn, eructation, stomach pain and flatulence, as well as superior overall relief (P less than 0.02). The time between the first doses of medication and the attainment of good or excellent relief was also significantly shorter (P less than 0.01) in the bismuth subsalicylate-treated subjects for the individual symptoms of nausea, sense of fullness, heartburn and eructation. There were no adverse reactions.

Abdominal Pain