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Twenty-Four Hour pH Study and Manometry in Gastric Esophageal Substitutes in Children
Geeta Kekre1, Vishesh Dikshit1, Paras Kothari1
1Department of Paediatric Surgery, Lokmanya Tilak Municipal Medical College, Mumbai, India.
Insights
Gastric esophageal substitutes in children show normal circadian pH rhythms and mass contractions during swallowing, suggesting effective content clearance. This study investigated motility and pH in these substitutes.
Area of Science:
- Pediatric Surgery
- Gastroenterology
- Physiology
Background:
- Limited studies exist on the physiology of transposed stomachs used as esophageal substitutes in children.
- Gastric pull-up and gastric tube procedures are common for esophageal replacement in pediatric patients.
Purpose of the Study:
- To investigate the motility and pH characteristics of gastric esophageal substitutes in children.
- To assess the functional physiology of gastric pull-ups and gastric tubes used in pediatric esophageal replacement.
Main Methods:
- Manometry and 24-hour pH monitoring were employed in 10 children (24-55 months) who had undergone gastric esophageal replacement.
- Motility and pH were analyzed in various gastric substitute configurations (gastric tube, gastric pull-up) and surgical approaches (transhiatal, retrosternal).
Main Results:
- The mean lowest pH in the intra-thoracic substitute was 4.0, and in the sub-diaphragmatic remnant stomach was 3.3.
- A statistically significant difference in pH was observed between the intra-thoracic and sub-diaphragmatic portions (p<0.05), with lower pH below the diaphragm.
- Gastric circadian rhythm was evident, with lowest pH in the evening and highest in the morning. Mass contractions occurred during swallowing.
Conclusions:
- Gastric esophageal substitutes exhibit a normal gastric circadian rhythm.
- Swallowing triggers mass contractions in the substitute, indicating functional motility.
- The gastric substitute appears capable of effective content clearance.
Purpose:
Studies on the physiology of the transposed stomach as an esophageal substitute in the form of a gastric pull-up or a gastric tube in children are limited. We conducted a study of motility and the pH of gastric esophageal substitutes using manometry and 24-hour pH measurements in 10 such patients.
Methods:
Manometry and 24 hour pH studies were performed on 10 children aged 24 to 55 months who had undergone gastric esophageal replacement.
Results:
Six gastric tubes (4, isoperistaltic; 2, reverse gastric tubes) and 4 gastric pull-ups were studied. Two gastric tubes and 4 gastric pull-ups were transhiatal. Four gastric tubes were retrosternal. The mean of the lowest pH at the midpoint of the substitute was 4.0 (range, 2.8-5.0) and in the stomach remaining below the diaphragm was 3.3 (range, 1.9-4.2). In both types of substitute, the difference between the peak and the nadir pH recorded in the intra-thoracic and the sub-diaphragmatic portion of the stomach was statistically significant (p<0.05), with the pH in the portion below the diaphragm being lower. The lowest pH values in the substitute and in the remnant stomach were noted mainly in the evening hours whereas the highest pH was noted mainly in the morning hours. All the cases showed a simultaneous rise in the intra-cavitatory pressure along the substitute while swallowing.
Conclusion:
The study suggested a normal gastric circadian rhythm in the gastric esophageal substitute. Mass contractions occurred in response to swallowing. The substitute may be able to effectively clear contents.
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