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FIGURE 1 • Pyloroplasty. (Figure 46.2 in Mulholland MW. Gastroduodenal ulceration. In: Mulholland MW, Lillemoe KD, Doherty GM, et al., eds. Greenfield’s Surgery: Scientific Principles and Practice. 4th ed. Baltimore, MD: Lippincott Williams & Wilkins, 2006:722–735).
Pitfalls
• Failure to perform careful esophageal dissection and injuring/perforating the esophagus
• Forgetting to perform biopsies of the vagal nerves for confirmation of the appropriate resection of nerve tissue
• Causing splenic injury when applying traction on the stomach
• Causing a postoperative hiatal hernia from not repairing defects at the esophageal hiatus at the time of vagotomy
b. Vagotomy and antrectomy ( T a b l e 3): The
combination of the vagotomy and antrectomy
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eliminates basal acid secretion and decreases stimulated acid secretion by 80%. The benefits of a vagotomy with antrectomy are that the procedure may be applied to a variety of situations, and that the ulcer recurrence rate is very low. The disadvantages are that the operative mortality is higher than with V&D or highly selective vagotomy (HSV), and that there may be complications associated with the subsequent Billroth I or Billroth II reconstructions. In the modern era, the antrectomy should be reserved for healthy/stable patients with refractory ulcer disease and/or anatomic indications (e.g., large antral gastric ulcers, pyloric scarring).
TABLE 3. Antrectomy
Procedure:
The vagotomy proceeds as described above. The antrectomy is begun by separating the distal half of the greater curvature by dissecting the greater omentum from the proximal half of the transverse colon, carefully isolating and ligating the branches from the gastroepiploic arcade. Then the posterior wall of the first part of the duodenum is dissected from the pancreas. The gastrohepatic ligament is divided proximally along the lesser curvature and the left gastric vessels along the lesser curvature are ligated and divided. The stomach is divided with the
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goal to remove all the antral mucosa. The upper margin of the antrum may be approximated by identifying the halfway point on the lesser curvature between the gastroesophageal junction and the pylorus. The stomach is divided with a GIA-style linear stapler using 4.8 mm staples. Next, the right gastric artery is identified above the pylorus, ligated, and divided. To facilitate manipulation of the duodenum, dissect approximately 1.5 cm of the posterior duodenum off of the pancreas. Divide the duodenum just distal to the pylorus with a GIA-style linear stapler. Send a frozen section biopsy of the margin of duodenal stump to confirm the presence of duodenal Brunner’s glands to avoid retained antrum. Following the antrectomy, either a Billroth I gastroduodenal anastomosis or a Billroth II gastrojejunostomy is constructed. A Billroth I requires at least 1 cm of healthy duodenum and in the case of significant scarring it is difficult to perform. A Billroth II is the default reconstruction and can almost always be performed. For a Billroth I reconstruction, the staple line of the transected duodenum is excised and an end-to-end gastroduodenal anastomosis is performed in two layers. The inner layer consists of full-thickness continuous sutures. The outer layer consists of interrupted seromuscular Lembert sutures. A crown stitch is placed at the “angle of sorrow” of the gastroduodenal anastomosis. If a Billroth II is to be constructed, then the duodenal stump is closed in two layers. The Billroth II gastrojejunostomy is begun by choosing a loop of proximal jejunum and bringing it antecolic or retrocolic to the stomach. If a retrocolic approach is chosen, care must be taken to close the mesenteric defect to reduce the risk of a future internal hernia. The jejunum is aligned along the gastric pouch and a two-layered gastrojejunostomy is performed. A crown
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stitch is placed at the “angle of sorrow” at the medial margin of the gastrojejunal anastomosis. Any exposed staples from the antrectomy should be oversewn.
Pitfalls
• Incomplete removal of the antrum increases the risk of developing a marginal ulcer.
• For the Billroth II reconstruction, it is important to properly close the duodenal stump to prevent future leaks that could be complicated by fistula formation or pancreatitis.
• Splenic injury may occur secondary to downward traction on the greater curvature of the stomach.
c. Parietal cell/proximal vagotomy (Table 4) (Figure 2):
The goal of the parietal cell vagotomy is to eliminate vagal stimulation of the acid-secreting portion of the stomach, while retaining motor innervation to the antrum and pylorus. The receptive relaxation of the stomach is still affected by this procedure, and liquid emptying from the stomach is accelerated, but solid emptying is normal. This procedure reduces the basal acid secretion by 75% and the stimulated acid secretion by 50%. The HSV has low mortality (risk <
0.5%) and morbidity but has a high ulcer recurrence rate especially with inexperienced surgeons.
TABLE 4. Parietal Cell Vagotomy Key Points
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FIGURE 2 • Truncal and proximal vagotomy. (Figure 46.1 in Mulholland MW. Gastroduodenal ulceration. In: Mulholland MW, Lillemoe KD, Doherty GM, et al., eds. Greenfield’s Surgery: Scientific Principles and Practice. 4th ed. Baltimore, MD: Lippincott Williams & Wilkins, 2006:722–735).
Procedure:
The initial exploration is as described for truncal vagotomy. The anterior nerve of Latarjet, which is the termination of the left vagus nerve, is identified and encircled. Then the lesser sac is examined for adhesions to the pancreas and then entered by dividing the gastrocolic ligament, while preserving the gastroepiploic arcade. Next, the lesser omentum is divided from the lesser curvature between the incisura angularis and the cardia, by dividing all of the blood vessels and nerves that enter the lesser curvature. The dissection begins just proximal to the crow’s foot of the nerve of Latarjet and proceeds proximally along the lesser curvature to the left side of the gastroesophageal junction. The neurovascular branches should be ligated with 3-0 or 4-0 silk sutures and divided. Then the stomach is reflected upward and the posterior denervation is conducted in a similar manner. Then the nerve fibers and blood vessels on the lower 5 to 7 cm of the
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esophagus must be dissected and ligated.
Pitfalls
• Recurrent ulcers may be the consequence of an inadequate proximal vagotomy.
• Careful dissection around the lesser curvature of the stomach is important to decrease the risk of injury to the lesser curve.
Special Intraoperative Considerations
Laparoscopic repair:
Omental patch repair of ulcers <1.0 cm may be performed by either an open or laparoscopic approach. A randomized controlled trial of 121 patients with perforated peptic ulcers reported that the laparoscopic group had significantly lower analgesic requirements, postoperative hospital length of stay, and returned to work significantly earlier than the open group. There were no significant differences between the two groups in mortality, incidence of reoperation, or postoperative intra-abdominal fluid collections.
Giant perforated ulcers:
There is no standard management for giant perforated ulcers (>2 to 3 cm). Recommendations for repair have included omental patch, controlled tube duodenostomy, jejunal pedicled graft, jejunal serosal patch, free omental plug, partial gastrectomy, and pyloric exclusion. The choice of repair will be influenced by the patient’s status, the size of the perforation, the degree of intraperitoneal contamination, and the surgeon’s experience.
Posterior perforation:
Spontaneous posterior perforation of a duodenal ulcer is rare. A definitive ulcer operation is typically undertaken, though there is no standard treatment.
Perforated gastric cancer:
Though perforation is a rare complication (<1%) of gastric cancer, a biopsy and frozen section should be taken during surgery for all gastric perforations. Options for the surgical repair of a perforated
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gastric cancer include omental patch, emergency gastrectomy, and a two-stage radical gastrectomy.
Perforation at the gastroesophageal junction:
The operative approach to perforation of an ulcer located next to the esophagogastric junction may include a subtotal gastrectomy to include the ulcer with a Roux-en-Y esophagogastrojejunostomy or a vagotomy with antrectomy.
Postoperative Management
H.
pylori
infection should be treated with triple therapy for 10 to 14 days; a common treatment regimen is clarithromycin, amoxicillin, and omeprazole. Following treatment conclusion,
H. pylori
eradication should be confirmed. Patients should receive counseling regarding NSAID use.
Postoperative complications include the following:
1. An early ulcer recurrence with leak is often treated with reexploration and may require gastric resection to adequately repair.
2. An uncontained leak after omental patch may require reexploration and gastric resection with a Billroth II.
3. Subphrenic and subhepatic abscesses are associated with a surgery delay >12 hours.
4. A patient should be evaluated for duodenal obstruction if gastric emptying is not normal by the eighth postoperative day.
5. Wound infection
6. Pneumonia
7. Pancreatitis
In patients following a definitive ulcer surgery there are
also the following risks:
1. Diarrhea following truncal vagotomy occurs in 5% to 10% of patients. It typically occurs 1 to 2 hours
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following a meal. This problem usually resolves without intervention. Persistent symptoms may be improved by cholestyramine and/or loperamide. If medical therapy does not improve symptoms, a surgical option includes placement of a reversed jejunal interposition placed 100 cm distal to the ligament of Treitz.
2. Dumping syndrome occurs in 5% to 10% of patients following distal gastrectomy, pyloroplasty, or pyloromyotomy. It is classified as either early dumping, occurring within 30 to 60 minutes of eating; or late dumping, occurring 2 to 3 hours following a meal. Symptoms of early dumping include fatigue, facial flushing, lightheadedness, diaphoresis, palpitations, cramping abdominal pain, nausea, vomiting, and diarrhea. Symptoms of late dumping are typically limited to vasomotor symptoms. Treatment of these symptoms with dietary manipulation is often successful. Octreotide may be useful in severe cases. Octreotide, administered prior to meals, has been shown to improve both gastrointestinal and vasomotor symptoms. Remedial surgery is an option for patients with dumping symptoms resistant to medical management; however, this approach is typically not used because most patients do eventually respond to conservative therapy.
3. Following elimination of the pyloric sphincter bile can reflux into the stomach. Alkaline reflux gastritis develops in 2% of patients. It is characterized by epigastric pain and nausea that is provoked by meals. Medical therapy with cholestyramine may improve symptoms. Cases resistant to medical management may be treated surgically with a Billroth II gastrojejunostomy with Braun enteroenterostomy, Roux-en-Y gastrojejunostomy, or a Henley loop.
4. Early satiety with epigastric fullness and emesis with
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meals may develop secondary to gastric stasis, having a small gastric remnant, or from postsurgical atony. Atony may be confirmed with a solid food emptying test and then treated with a prokinetic agent, or if that fails, gastric pacing or completion gastrectomy. Symptoms of a small gastric remnant typically improve with small frequent meals.
5. Following Billroth II construction, the limb may become obstructed and cause afferent and efferent loop syndromes. Afferent loop syndrome is characterized by postprandial epigastric pain and non-bilious vomiting that is relieved following bilious vomiting. Efferent loop syndrome is characterized by epigastric pain, distention, and bilious vomiting. Both syndromes are treated with a surgical approach.
TAKE HOME POINTS
Early diagnosis and operation are associated with improved outcome. It is important to identify prior NSAID use. It is important to identify
H. pylori
infection. Surgical goals are to control the perforation and lavage the abdominal cavity. Although rarely required, definitive ulcer operation may be required in select patients. Gastric perforation should prompt consideration of underlying gastric cancer.
SUGGESTED READINGS
Adachi Y, Mori M, Maehara Y, et al. Surgical results of perforated gastric
carcinoma: an analysis of 155 Japanese patients. Am J Gastroenterol. 1997;92:516–518.
Ashley SE, Evoy D, Daly JM. Stomach. In: Schwartz S, ed. Principles of
Surgery. New York: McGraw-Hill, 1999:1181.
Bank S, Marks IN, Louw JH. Histamine- and insulin-stimulated gastric acid
secretion after selective and truncal vagotomy. Gut. 1967;8:36–41.
Cellan-Jones CJ. A rapid method of treatment in perforated duodenal
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ulcer. BMJ. 1929;1:1076–1077.
Crofts TJ, Park KG, Steele RJ, et al. A randomized trial of nonoperative
treatment for perforated peptic ulcer. N Engl J Med. 1989;320:970–973.
Dempsey DT. Stomach. In: Brunicardi FC, Andersen DK, Billiar TR, et al.,
eds. Schwartz’s Principles of Surgery. 9th ed. Columbus: McGraw-Hill, 2010:889–948, Chapter 26.
Donovan AJ, Berne TV, Donovan JA. Perforated duodenal ulcer: an
alternative therapeutic plan. Arch Surg. 1998;133:1166–1671.
Gabriel SE, Jaakkimainen L, Bombardier C. Risk for serious
gastrointestinal complications related to use of nonsteroidal anti­inflammatory drugs. A meta-analysis. Ann Intern Med. 1991;115:787–
796.
Gisbert JP, de la Morena F, Abraira V. Accuracy of monoclonal stool antigen
test for the diagnosis of H. pylori infection: a systematic review and meta­analysis. Am J Gastroenterol. 2006;101:1921–1930.
Grabowski MD, Dempsey DT. Concepts in surgery of the stomach and
duodenum. In: Scott-Conner C, ed. Chassin’s Operative Strategy in General Surgery: An Explosive Atlas. New York: Springer Science Business Media, 2002.
Graham DY, Malaty HM. Alendronate and naproxen are synergistic for
development of gastric ulcers. Arch Intern Med. 2001;161:107–110.
Grassi R, Romano S, Pinto A, et al. Gastro-duodenal perforations:
conventional plain film, US and CT findings in 166 consecutive patients. Eur J Radiol. 2004;50:30–36.
Gunshefski L, Flancbaum L, Brolin RE, et al. Changing patterns in
perforated peptic ulcer disease. Am Surg. 1990;56:270–274.
Gupta S, Kaushik R, Sharma R, et al. The management of large
perforations of duodenal ulcers. BMC Surg. 2005;5:15.
Jordan PH Jr, Thornby J. Perforated pyloroduodenal ulcers. Long-term
results with omental patch closure and parietal cell vagotomy. Ann Surg. 1995;221:479–486; discussion 486–488.
Lal P, Vindal A, Hadke NS. Controlled tube duodenostomy in the
management of giant duodenal ulcer perforation: a new technique for a surgically challenging condition. Am J Surg. 2009;198:319–323.
Lanas A, Serrano P, Bajador E, et al. Evidence of aspirin use in both upper
and lower gastrointestinal perforation. Gastroenterology. 1997;112:683–
689.
Lanza FL. A guideline for the treatment and prevention of NSAID-induced
ulcers. Members of the Ad Hoc Committee on Practice Parameters of the American College of Gastroenterology. Am J Gastroenterol. 1998;93:2037–2046.
Lee SC, Fung CP, Chen HY, et al. Candida peritonitis due to peptic ulcer
perforation: incidence rate, risk factors, prognosis and susceptibility to fluconazole and amphotericin B. Diagn Microbiol Infect Dis. 2002;44:23–
27.
Leodolter A, Wolle K, Peitz U, et al. Evaluation of a nearpatient fecal antigen
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