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Updated: Aug 21, 2026

Robotic Heller Myotomy for Advancements in Surgical Management of Achalasia
Published on: February 16, 2024
Objective analysis of gastroesophageal reflux after laparoscopic heller myotomy: an anti-reflux procedure is required
S E Burpee1, J Mamazza, C M Schlachta
1The Centre for Minimally Invasive Surgery, St. Michael's Hospital, University of Toronto, 30 Bond Street, Toronto, ON, M5B 1W8, Canada.
Insights
Laparoscopic Heller myotomy without an antireflux procedure resulted in a high rate of gastroesophageal reflux. Concurrent antireflux procedures are recommended to manage reflux after Heller myotomy.
Area of Science:
- Gastroenterology
- Surgical Innovation
- Esophageal Motility Disorders
Background:
- Debate exists regarding the necessity of concurrent antireflux procedures with Heller myotomy.
- This study objectively analyzes gastroesophageal reflux after laparoscopic Heller myotomy without an antireflux procedure.
Purpose of the Study:
- To determine the rate of gastroesophageal reflux following laparoscopic Heller myotomy when no antireflux procedure is performed.
- To provide objective data to inform the decision-making process for concurrent antireflux procedures.
Main Methods:
- Prospective review of 54 patients undergoing laparoscopic Heller myotomy without antireflux procedures.
- Symptomatic assessment and objective testing including 24-h pH monitoring and endoscopy.
- Objective reflux defined by positive 24-h pH monitoring or esophagitis.
Main Results:
- 30% of patients reported significant heartburn.
- 60% of patients showed objective evidence of gastroesophageal reflux.
- 23% of patients experienced silent reflux (objective reflux without heartburn).
Conclusions:
- Laparoscopic Heller myotomy without a concurrent antireflux procedure leads to an unacceptable rate of gastroesophageal reflux.
- Performing a concurrent antireflux procedure is recommended to mitigate reflux risk.
Background:
Controversy exists over the necessity of performing a concurrent antireflux procedure with a Heller myotomy. We therefore sought to objectively analyze gastroesophageal reflux following laparoscopic Heller myotomy where an antireflux procedure was not performed.
Methods:
A prospective database of 66 cases of laparoscopic Heller myotomy performed between November 1996 and June 2002 was reviewed. Previous, concurrent, or subsequent fundoplication was performed in 12 patients; therefore 54 patients without antireflux procedures were available for analysis. Follow-up included symptomatic assessment in 50 patients (93%). Heartburn was assessed on a four-point scale with clinical significance defined as >2 episodes/week. Objective testing, including endoscopy, esophagogram, manometry, and 24-h pH monitoring, was offered to all patients. Objective evidence of reflux was defined as the composite endpoint of positive 24-h pH monitoring or esophagitis on endoscopy.
Results:
Significant heartburn was reported in 15 of 50 patients (30%). Positive 24-h pH recordings were seen in 11 of 22 patients tested while esophagitis was seen in 13 of 21 patients tested, resulting in objective evidence of reflux in 18 of 30 patients tested (60%). Of these 18 patients, seven did not have significant heartburn. All 12 patients without objective reflux did not have significant heartburn. Therefore, of the 30 patients with objective testing, seven (23%) had objective reflux without subjective heartburn (silent reflux).
Conclusion:
Objective analysis reveals an unacceptable rate of gastroesophageal reflux in laparoscopic Heller myotomy without an antireflux procedure. We therefore recommend performing a concurrent antireflux procedure.
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