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Recurrent pneumoperitoneum due to jejunal diverticulosis. With a review of the causes of spontaneous pneumoperitoneum.

In the absence of abdominal operative procedures, symptomless spontaneous pneumoperitoneum is uncommon. The case is described of a patient with jejunal diverticulosis who developed spontaneous pneumoperitoneum on three occasions and brief details are given of six other cases of jejunal diverticulosis with pneumoperitoneum from the literature. Other causes of symptomless pneumoperitoneum include pneumatosis intestinalis, perforation in tabes dorsalis or coma, stercoral ulceration, physiological pneumoperitoneum in women due to exercise in the knee-elbow position, and vaginal douches with a bulb syringe or effervescent fluid.

Aged

Effectors of hypercarbia during experimental pneumoperitoneum.

Hypercarbia occurs during laparoscopy with carbon dioxide (CO2) insufflation. This may be due to increased ventilatory dead space after expansion of the peritoneal cavity with impairment of diaphragmatic excursion, or to increased absorption of CO2 from the peritoneum. To separate these effects, the authors examined the consequences of different insufflating gases and of diminished tissue perfusion on hypercarbia and dead space during pneumoperitoneum. Helium was chosen as an alternate insufflating gas because it is both inert and minimally absorbed. Eight swine (18 to 20 kg) were anesthetized, paralyzed, and mechanically ventilated at constant minute volume. Pneumoperitoneum with helium was maintained at 15 mm Hg for 45 minutes. After desufflation and stabilization for 1 hour, pneumoperitoneum was repeated with CO2. The sequence was again repeated after hemorrhagic shock to constant mean arterial pressure of 50 mm Hg. Data was analyzed by analysis of variance; significance levels are P < 0.01 unless otherwise listed. Arterial PCO2 increased significantly with CO2 insufflation within 15 minutes in normotensive animals and within 30 minutes during hypotension. Arterial pH decrease with CO2 pneumoperitoneum was significant in both groups at 30 minutes. Mixed venous PCO2 also increased with CO2 pneumoperitoneum within 30 minutes. Hypotension did not alter these changes. No significant changes were seen with helium pneumoperitoneum. Neither helium nor CO2 pneumoperitoneum significantly altered dead space. The authors make the following conclusions: 1) Absorption of CO2 from the abdomen during CO2 pneumoperitoneum produces respiratory acidosis, which is not seen with helium insufflation; 2) Pneumoperitoneum does not significantly increase dead space with either gas; 3) Transperitoneal absorption of CO2 is only partly related to perfusion because significant hypercarbia occurs during hemorrhagic shock.

Absorption

Hypercarbia during carbon dioxide pneumoperitoneum.

Patients with cardiopulmonary insufficiency undergoing laparoscopic surgery with carbon dioxide (CO2) pneumoperitoneum may retain CO2 resulting in clinically significant respiratory acidosis. A canine model of pulmonary emphysema induced by papain inhalation was utilized to evaluate the respiratory effects of both CO2 and helium pneumoperitoneum. Prior to papain inhalation and 5 and 8 weeks after initial treatment under general anesthesia, mechanical ventilation was adjusted to maintain the end-tidal CO2 (ETCO2) at 40 mm Hg during baseline and pneumoperitoneum physiologic monitoring periods. Utilizing an analysis of variance, hemodynamic and respiratory physiologic parameters were compared. In this canine model, all dogs demonstrated consistent hypercarbia during CO2 pneumoperitoneum prior to papain treatments, but CO2 retention was significantly increased in the emphysematous state. The occurrence of hypercarbia during CO2 pneumoperitoneum may be underestimated by ETCO2 monitoring as was revealed by an increased PaCO2 (arterial carbon dioxide pressure)-ETCO2 gradient with an increasing time interval between papain exposure and period of physiologic monitoring. Irrespective of the pulmonary condition of the dog, helium pneumoperitoneum did not produce any hypercarbic or acidic changes when compared with the concomitant baseline period of dogs prior to the induction of pneumoperitoneum, thus suggesting that helium pneumoperitoneum may be a reasonable alternative in patients at risk for CO2 retention.

Acidosis, Respiratory

Ventral herniorrhaphy aided by pneumoperitoneum.

Twenty-four patients with large abdominal incisional hernias were alternately treated with preoperative pneumoperitoneum. The insufflation was performed on an outpatient basis each day for approximately one week prior to operation. The pneumoperitoneum-treated group was spared the necessity of developing abdominal wall flaps and presented a much easier peritoneal dissection. The operative time was 50 minutes in the 12 pneumoperitoneum-treated patients compared with an average of 150 minutes in the standard repair-treated group. There were no infections in the pneumoperitoneum-treated group compared with five (42%) in the other group. The postoperative stay of the pneumoperitoneum-treated group averaged 3.5 days compared with 12.5 days for the standard repair-treated group. Pneumoperitoneum is a valuable adjunct in the repair of large ventral hernias.

Adult

Postoperative pneumoperitoneum: an unusual etiology.

Although postoperative pneumoperitoneum is a common finding, it is particularly disturbing when there is an increase in the amount of postoperative pneumoperitoneum or when the radiographic finding of pneumoperitoneum is accompanied by such physical findings as increased abdominal tenderness, peritoneal signs or paralytic ileus. Four patients operated upon at the Mount Sinai Hospital are presented. All patients underwent abdominal surgery for treatment of some form of inflammatory bowel disease and all were receiving systemic corticosteroids in the postoperative period. Abdominal findings of tenderness, ileus and peritoneal irritation developed shortly after the removal of Penrose drains in the postoperative period. Pneumoperitoneum was confirmed by abdominal roentgenographs. The first patient in this group underwent a laparotomy with essentially negative findings other than a freely open drain tract. The subsequent three patients were managed by close observation and frequent abdominal radiographs. These three patients had contrast roentgenographic studies of the upper gastrointestinal tract to rule out perforation of a peptic ulcer, and in the patient upon whom reservoir ileostomy had been performed, a contrast study of the reservoir was performed. All patients recovered fully with this management and there were no sequelae. The mechanism for the appearance of pneumoperitoneum after removal of drains, particularly when the patient is receiving systemic corticosteroids, is discussed. Emphasis is placed on the need to consider and rule out perforation of a hollow viscus in this situation before accepting drain removal as the sole cause of post-operative pneumoperitoneum.

Abdomen

[Pneumoperitoneum without perforation of the gastrointestinal tract in a patient with systemic lupus erythematosus].

Pneumoperitoneum often occurs after the perforation of the gastrointestinal tract. However, pneumoperitoneum without the perforation has been reported as one of the complications of collagen diseases, the cause of which is usually the rupture of pneumatosis cystoides intestinalis (PCI). PCI is sometimes observed in the patients with scleroderma and mixed connective tissue disease but rarely in the patients with systemic lupus erythematosus. We reported here a case of systemic lupus erythematosus developed the pneumoperitoneum without the perforation of gastrointestinal tract. A 51-year-old female who had been diagnosed as systemic lupus erythematosus and taken steroid for 12 years, visited our hospital because of general malaise. She had no abdominal symptoms but the roentgenographic examinations revealed the pneumoperitoneum. The laparotomy was performed and there were no findings of the perforation of the gastrointestinal tract. Because PCI is hardly recognized macroscopically after the rupture and the pneumoperitoneum due to PCI is often asymptomatic, we considered the cause of the pneumoperitoneum in this case was the rupture of PCI. The mechanisms of the formation of PCI in patients with collagen diseases were also discussed in this paper.

Female

Spontaneous pneumoperitoneum. A surgical dilemma.

Pneumoperitoneum is usually the result of hollow viscus perforation with associated peritonitis. Nonsurgical spontaneous pneumoperitoneum incidental to intrathoracic, intra-abdominal, gynecologic, iatrogenic, and other miscellaneous causes not associated with perforated viscus have been documented in the literature. Seven cases of spontaneous pneumoperitoneum admitted over 3-year period to Grady Memorial Hospital, Atlanta, Georgia are reported. Six patients with pneumoperitoneum underwent exploratory laparotomy when clinical examination suggested an acute abdomen; no intra-abdominal pathology was documented in any of these patients. A seventh patient, on ventilatory support, was managed conservatively after performing a diagnostic peritoneal lavage that was negative. There were no cases of radiographically misdiagnosed pneumoperitoneum. Pneumoperitoneum, preceded by a reasonable incidental cause in a patient with a adequate abdominal examination, may warrant continued observation thus avoiding an unnecessary laparotomy.

Adult

Pneumoperitoneum in the newborn infant.

Fifty-three newborns with pneumoperitoneum were treated between July 1980 and July 1985. The birth weights of these infants ranged from 600 to 4350 grams; nearly 75 per cent weighed less than 1500 grams. The etiology of the pneumoperitoneum and the hospital survival were reviewed. All operative patients had exploratory surgery through an upper abdominal transverse incision extending across both rectus muscles. All gastric and duodenal perforations were closed primarily; the perforations in the remaining gastrointestinal tract were generally exteriorized through the lateral edge of the wound. The single leading cause of pneumoperitoneum in the newborn is necrotizing enterocolitis, accounting for 60 per cent of the patients in this series; 78 per cent of these infants survived. All infants with ("spontaneous") ileal perforations survived. The two patients with colon perforations (from meconium plug obstruction) died, one of congenital heart disease associated with Down's syndrome and the other of hyaline membrane disease. One patient who had mild hyaline membrane disease, who was not ventilated, and who did not have mediastinal emphysema also had pneumoperitoneum for which no cause was found at laparotomy ("spontaneous"). He survived. In six critically ill infants (11% of the series) pneumoperitoneum developed secondary to mediastinal dissection of air from ventilators. None of these infants was operated on because an intestinal perforation as a source of the pneumoperitoneum could reliably be excluded by the presence of pneumomediastinum and/or a negative paracentesis. This group of infants warrants special attention, because in them "negative" laparotomies performed in search of an intestinal perforation would certainly compromise their already precarious conditions.

Enterocolitis, Pseudomembranous

Pneumoperitoneum following percutaneous endoscopic gastrostomy. Does the timing of panendoscopy matter?

Percutaneous endoscopic gastrostomy (PEG) has had a significant impact on enteral alimentation in patients unable to maintain adequate oral caloric intake. PEG avoids the morbidity and mortality associated with the traditional feeding gastrostomies placed by celiotomy. Several authors have documented benign, self-limiting pneumoperitoneum following PEG placement. No study has addressed whether the timing of panendoscopy in relation to gastric puncture has an effect on the incidence of post-PEG pneumoperitoneum. The authors prospectively studied 30 patients undergoing PEG. Panendoscopy was either performed before or after gastric puncture, and each patient then had abdominal radiographs to determine the presence of pneumoperitoneum. Four of 16 patients (25%) having panendoscopy prior to gastric puncture had radiographic evidence of pneumoperitoneum compared to three of 14 patients (23%) having panendoscopy following gastric puncture. The authors conclude that the timing of panendoscopy in relation to gastric puncture does not significantly effect the incidence of post-PEG pneumoperitoneum.

Aged

Diagnostic pneumoperitoneum for the detection of the clinically occult contralateral hernia in children.

The detection and management of occult contralateral hernia in children who present with a clinically evident unilateral hernia have evoked controversy. Routine use of herniography, intraoperative probing of the contralateral inguinal area and routine or selective exploration of the contralateral groin all have their advocates and detractors. During the last 5 years we have used intraoperative pneumoperitoneum and we report our experience in 64 patients 3 months to 9 years old. A retrospective analysis of the data revealed that pneumoperitoneum was negative in demonstrating a contralateral inguinal hernia in 59 of 64 patients (92%). Contralateral exploration was not performed in patients in whom pneumoperitoneum was negative. All 5 patients who tested positive had an indirect inguinal hernia upon contralateral exploration and all 5 were less than 3 years old. Patients who had a negative pneumoperitoneum were followed for up to 5 years and only 1 (1.8%) false negative examination was discovered. Pneumoperitoneum is a safe, effective means to evaluate the contralateral groin for occult hernia at the time of unilateral hernia repair in children.

Child

Incidence and significance of pneumoperitoneum after inguinal herniorrhaphy.

Previous studies have shown pneumoperitoneum either to be extremely rare or to not occur after inguinal herniorrhaphy, and that its presence signifies a serious intra-abdominal complication. A prospective study has been carried out to consider the incidence and significance of pneumoperitoneum after herniorrhaphy for indirect inguinal hernias. In a 1-year period, 100 patients were studied. Pneumoperitoneum was detected in six patients. In five patients, the amount of free gas was minimal and was reabsorbed after 48 h. The pneumoperitoneum was large and of increasing amount in one patient. Faecal fistula developed 7 days after operation due to an injury from the hernial repair to the sigmoid colon. The result of this study suggested that detectable pneumoperitoneum of small amount may be present after inguinal herniorrhaphy and, if it persists for longer than 48 h, the presence of a perforated viscus should be considered.

Hernia, Inguinal

Sonographic detection of pneumoperitoneum in patients with acute abdomen.

We describe five patients who presented with an acute abdomen in whom pneumoperitoneum was first detected by sonography. All five subsequently were proved to have a perforated viscus. In all cases, the pneumoperitoneum was seen as an echogenic line with a posterior ring-down or reverberation artifact between the anterior abdominal wall and the anterior surface of the liver. The finding was shown best in the right upper quadrant with the patient in the left lateral decubitus position. The echoes caused by the pneumoperitoneum overlapped the echoes of the lung during inspiration, but the echoes were separate during expiration. The probable cause of pneumoperitoneum was determined with sonography in four of the five patients: three had perforation of duodenal ulcer and one had perforation of gastric cancer. The fifth patient had a perforated ileum, which was not evident on the sonogram. Our experience with these patients suggests that the detection of pneumoperitoneum on sonography in patients with an acute abdomen is an important sign of a perforated viscus.

Abdomen, Acute

Diagnosis of pneumoperitoneum on supine abdominal radiographs.

A blinded, retrospective study was performed to determine the value of supine abdominal radiographs in diagnosing pneumoperitoneum. Supine films from 44 cases of pneumoperitoneum were randomly interspersed among supine films from 87 control subjects without free air, and the films were reviewed for the presence or absence of various signs of pneumoperitoneum, including Rigler's sign (gas on both sides of the bowel wall), the falciform ligament sign (gas outlining the falciform ligament), the football sign (gas outlining the peritoneal cavity), the inverted-V sign (gas outlining the medial umbilical folds), and the right-upper-quadrant gas sign (localized gas in the right upper quadrant). One or more of these signs were present in 26 cases (59%) of pneumoperitoneum, including the right-upper-quadrant gas sign in 18 cases (41%), Rigler's sign in 14 cases (32%), and the falciform ligament and football signs in one case each (2%). Unfortunately, there were frequent errors in the interpretation of the right-upper-quadrant gas sign and Rigler's sign, with a total of 11 false-positive cases (13%). Further analysis of the true-positive right-upper-quadrant gas signs showed that these gas collections were always triangular or linear with an inferolateral to superomedial orientation and, if triangular, a concave superolateral border. In the true-positive Rigler's signs, the bowel wall thickness ranged from 1 to 8 mm, whereas the false positives all had a bowel wall thickness of 1 mm or less. Proper interpretation of the various signs of pneumoperitoneum on supine films should lead to more accurate diagnosis of this condition.

False Positive Reactions

Traumatic pneumoperitoneum. Implications of computed tomography diagnosis.

Pneumoperitoneum detected on plain radiographs following blunt abdominal trauma is nearly pathognomonic of bowel perforation and usually mandates exploratory laparotomy. To determine the significance of computed tomography (CT)-detected pneumoperitoneum, we reviewed the clinical records and imaging studies of all trauma patients in our hospital over a seven-year period whose abdominal CT scans showed free intraperitoneal gas. Patients who had penetrating injuries or peritoneal lavage prior to CT were excluded. Of the 18 patients who met these inclusion criteria, surgically confirmed bowel injury was found in only four (22%). In the remaining 14 patients, no evidence of gastrointestinal perforation was found by exploratory laparotomy (2 patients), diagnostic peritoneal lavage (4 patients), GI studies and clinical follow-up (6 patients), or clinical follow-up alone (5 patients). Seven patients had a pneumothorax as a possible cause for pneumoperitoneum. Two additional patients were on mechanical ventilation. Unlike pneumoperitoneum seen on plain film, CT-detected pneumoperitoneum is not pathognomonic of bowel perforation. While laparotomy is not mandatory in the non-surgically explored patient, close clinical observation is essential, and additional diagnostic tests such as peritoneal lavage or radiographic contrast studies can be beneficial to confirm the absence of intestinal injury.

Abdominal Injuries

[Pneumoperitoneum solely diagnosed with CT scanning].

The authors report 3 cases of pneumoperitoneum due to visceral perforation and whose diagnosis was not performed on plain abdominal radiographs. In the 3 cases, pneumoperitoneum diagnosis and laparotomy decision were based on the results of an emergency abdominal CT Scan. Each time, the origin of the pneumoperitoneum was also clearly evidenced. When visceral perforation is suspected, we advice to perform CT Scan of the abdomen if pneumoperitoneum diagnosis has not been made by plain abdominal radiographs. CT Scan is an accurate exam for pneumoperitoneum diagnosis that permits undelayed surgical treatment.

Aged

Misleading pneumoperitoneum.

Misleading pneumoperitoneum takes one of two forms: true pneymoperitoneum without peritonitis or pneumoperitoneum simulated by adventitious x-ray shadows. In both instances, the roentgenographic appearance of free intraperitoneal air proves to be a specious indication for laparotomy. Twenty-eight per cent of 29 patients with misleading pneumoperitoneum were subjected to operations that, retrospectively, might not seem absolutely necessary. The decisions to operate on patients with pneumoperitoneum without peritonitis were based on the amount of pneumoperitoneum roentgenographically visualized. The instances of pseudopneumoperitoneum had several common features. The diagnosis often was based only on x-ray films of the chest. Compatibility with clinical features was marginal; the radiolucency was often not truly at the apex of the diaphragm. Finally, the x-ray films, interpretation and working conditions frequently were suboptimal.

Adolescent

[Pneumoperitoneum of genital origin. Apropos of a case at the beginning of pregnancy].

The authors studied the literature for similar findings in order to try to classify the different types of pneumoperitoneum when they had a case of pneumoperitoneum of genital origin. They then went on to study the mechanism by which these rare cases of genital pneumoperitoneum occurred: the insufflation or aspiration of air through the tubes, tubal antiperistalsis and uterine or vaginal perforations. From the clinical angle it is essential to eliminate pneumoperitoneum secondary to perforation of a hollow organ, and then to look for signs of peritonitis which only occur in genital pneumoperitoneum due to uterine perforation. The case usually cures spontaneously but recurrences are not uncommon. If there are no signs of peritonitis expectant treatment should usually be undertaken.

Abortion, Induced

Pneumoperitoneum and its association with ruptured abdominal viscus.

Pneumoperitoneum is not invariably associated with ruptured or perforated intra-abdominal viscus. To determine the incidence of free air associated with intra-abdominal viscus perforation, the medical records of 77 consecutive patients whose discharge or autopsy diagnosis included pneumoperitoneum or perforated viscus at a community hospital were retrospectively reviewed between June 1980 and October 1985. Abdominal viscus perforation, as determined by contrast studies or at operation, was not invariably associated with free air. Sixty-nine percent (23/33) of gastroduodenal, 30% (3/10) of small-bowel, and 37% (11/30) of large-bowel perforations had free air, as determined by preoperative x-ray film. Four cases with a total of six episodes of pneumoperitoneum were identified where viscus perforation was not documented. Pneumoperitoneum thus remains a reliable sign of viscus perforation; however, lack of this finding does not rule out perforation, and unusual causes must be considered.

Adult