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Tissue response to polypropylene meshes used in the repair of abdominal wall defects.

The degree of integration of biomaterials used in the repair of abdominal wall defects seems to depend upon the structure of the prosthesis. Several polypropylene (PP) prostheses are currently available which differ in the number of PP filaments, the type of weave and the porosity. The aim of this study was to evaluate the integration, adhesion formation and resistance to traction of three types of PP prostheses (Marlex, Trelex and Prolene) used in the partial or total repair of abdominal wall defects. Abdominal wall defects (7 x 5 cm) were created in 54 New Zealand rabbits involving all the tissue layers (total substitutions (TS); n = 27) or all layers excluding the parietal peritoneum (partial substitutions (PS); n = 27). The defects were repaired with PP monofilament prostheses of different weave (1 mm porosity) (Marlex, n = 18; Trelex, n = 18) or bifilament (2 mm porosity) (Prolene; n = 18). They were placed in contact on one side with subcutaneous tissue and on the other with abdominal viscera or parietal peritoneum. Animals were killed at 30, 60 and 90 days and samples of prosthesis and scar tissue processed for light and scanning microscopy. The adhesion formation with viscera was evaluated. Resistance to traction was measured with a tensiometer using strips including the prosthesis and anchorage tissue. Adhesions were detected in all the TS and in four PS. Microscopic analysis revealed total integration of the TS samples by fibrous and disorganized tissue. Prostheses used for PS were integrated by white adipose tissue with the exception of the areas around the mesh nodes and anchorage zones. The foreign body reaction could be seen as a moderate accumulation of white blood cells. Tensiometric analysis showed an increase in resistance to traction with time (P < 0.001) in each type of prosthesis, but no differences were detected (P > 0.001) between them. We concluded that: (a) the formation of adhesions was almost inhibited when the parietal peritoneum was left intact; (b) in both TS and PS, polypropylene prostheses integrated completely although the composition of the scar tissue was seem to differ; and (c) resistance to traction was similar in both TS and PS.

Abdominal Muscles↗

Marlex mesh for repair of abdominal wall defects.

The best synthetic material available for repair of abdominal wall defects associated with an insufficiency of tissue is Marlex mesh. Among 14 patients with large hernias and 3 who underwent tumour resection only 2 manifested recurrence of the defect. In three of these patients infection developed, but its control made it unnecessary to remove the Marlex. In another three with gross infection of the abdominal wall, Marlex was used successfully to provide abdominal wall closure.

Abdominal Muscles↗

Small intestinal submucosa: utilization for repair of rodent abdominal wall defects.

Prosthetic graft material is often used for the repair of abdominal wall defects that result from trauma, infection, neoplastic, or congenital deformities. A new material, porcine small intestinal submucosa, has been successfully used as an arterial and venous graft material in both canine and primate animal models with graft patency and infection rates equal to autologous vein. On the basis of these studies, small intestinal submucosa was used as a graft material for the repair of a 2 x 2-cm full-thickness defect of the muscle and fascia in the rodent abdominal wall (N = 11). Two animals were euthanized at 1 week, 2 weeks, 4 weeks, 2 months, and 3 months. At the time of euthanization, no abdominal hernias were noted and only minimal intra-abdominal adhesions were observed. One animal died on postoperative day 5 as a result of a wound dehiscence. Histological analysis of the excised abdominal wall hernia repairs revealed moderate initial inflammation but with incorporation of small intestinal submucosa with minimal inflammation at 2 months. No evidence of graft-versus-host rejection was noted with hematoxylin and eosin stains and light microscopy. Porcine small intestinal submucosa merits further study as a graft material for abdominal wall replacement.

Abdominal Muscles↗

Prenatal ultrasonic diagnosis of anterior abdominal wall defects.

Nine cases of different types of anterior abdominal wall defects were diagnosed prenatally by ultrasound: gastroschisis (one case), omphalocele (five cases), exstrophy of the cloaca (one case) and the extreme form of prune belly syndrome (two cases). The ultrasonic features of gastroschisis and omphalocele are well recognized by most experienced sonographists. The ultrasonic prenatal diagnosis of exstrophy of the cloaca has not been reported previously and it is a very rare entity. The anterior abdominal wall defect is larger than in omphalocene and is located infraumbilically. Fetal ascites and a lumbosacral myelomeningocele are present as well. The extreme form of prune belly syndrome is associated with the absence of the abdominal wall musculature and marked dilatation of the urinary tract, presented ultrasonically as multiple large cysts occupying the distended fetal abdominal cavity. The differential diagnosis of these entities and guidelines for their correct prenatal ultrasonic diagnosis will be discussed.

Abdominal Muscles↗

A scanning electron microscopical study of the two sides of polypropylene mesh (Marlex) and PTFE (Gore Tex) mesh 2 years after complete abdominal wall reconstruction. A study of 15 cases.

The use of biomaterials for the repair of abdominal wall defect is becoming common and safe. It has been 20 years since the senior author developed a method to reconstruct the very large transfixing abdominal wall defect with a combination of two biomaterials (Gore Tex) PTFE as a neo peritoneum and polypropylene superficial to this in order to give rigidity to the abdominal wall) and a superficial flap. An observation at the electron microscopy level of the two sides of the implants' surfaces was performed. At the time of a late abdominal wall surgical revision on 15 patients, the prosthesis fragments have been analyzed at the electron microscopy level. The aim of our study was to analyze the late evolution of the different sides of these prostheses. Our results showed, for the first time in vivo, that there is an impressive stability of the deep side of PTFE ultra structure after implantation, a significant difference of the two sides of PTFE at the ultrastructural level and the creation of an intermediate tissue between the two meshes. In contrast, the polypropylene invariably gave rise to adhesions and colonisation by the surrounding tissues. Findings confirmed that the structure and porosity of a biomaterial play a key role in the appearance of adhesions and their consistency.

Abdominal Wall↗

Ultrasonographic diagnosis and perinatal management of fetal abdominal wall defects.

Thirty-four fetuses with ultrasonographically diagnosed abdominal wall defects are described. In 20 out of the 25 (80%) cases with omphalocele, there were associated abnormalities, mainly chromosomal defects (48%), cardiac (28%), genitourinary (20%), craniofacial (20%) and diaphragmatic anomalies (12%). In gastroschisis, associated structural anomalies occurred in 2 out of 5. The 4 cases of abdominal wall defects as a part of amniotic band syndrome were associated with multiple severe defects. No chromosomal defects were found in the group with gastroschisis and amniotic band syndrome. Intrauterine fetal death occurred in 8 cases. Sixteen pregnancies were electively aborted because of an association with an anomaly incompatible with postnatal life; 3 pregnancies were electively terminated on their parents' own request. Two infants died shortly after birth. Seven infants were successfully treated. When level I ultrasound examination demonstrates a fetal abdominal wall defect, a detailed level II ultrasound examination is recommended to exclude associated malformations. In case of omphalocele, prenatal chromosome analysis is indicated. Delivery in a tertiary care center is recommended. A randomized prospective trial is needed to see whether cesarean section or vaginal delivery is the preferred mode of delivery for these infants.

Abdominal Muscles↗

Traumatic abdominal wall hernia: delayed presentation in two cases and a review of the literature.

Blunt and penetrating abdominal traumas are an important source of morbidity and mortality in the western world, especially in the young populations. Although most attention during the (primary) diagnostic process is directed toward the detection of internal injuries of the abdomen, blunt or penetrating trauma to the abdomen may result in defects of the abdominal wall. The diagnosis of traumatic abdominal wall hernia (TAWH) is rarely made. Morbidity due to TAWH, however, may be significant. In this article we report the delayed diagnosis of a TAWH in two patients after abdominal wall trauma and present a review of the literature concerning the diagnostic workup and treatment.

Abdominal Injuries↗

Pneumoperitoneum versus abdominal wall lift: effects on central haemodynamics and intrathoracic pressure during laparoscopic cholecystectomy.

BACKGROUND: It has been shown repeatedly that laparoscopic cholecystectomy using pneumoperitoneum (CO2 insufflation) may be associated with increased cardiac filling pressures and an increase in blood pressure and systemic vascular resistance. In the present study, the effects on the central circulation during abdominal wall lift (a gasless method of laparoscopic cholecystectomy) were compared with those during pneumoperitoneum. The study was also aimed at elucidating the relationships between the central filling pressures and the intrathoracic pressure. METHODS: Twenty patients (ASA I), scheduled for laparoscopic cholecystectomy, were randomised into two groups, pneumoperitoneum or abdominal wall lift. Measurements were made by arterial and pulmonary arterial catheterization before and during pneumoperitoneum or abdominal wall lift with the patient in the horizontal position. Measurements were repeated after head-up tilting the patients as well as after 30 min head-up tilt. The intrathoracic pressure was monitored in the horizontal position before and during intervention using an intraesophageal balloon. RESULTS: After pneumoperitoneum or abdominal wall lifting there were significant differences between the two groups regarding MAP, SVR, CVP, CI, and SV. Analogous to previous studies, in the pneumoperitoneum group CVP, PCWP, MPAP, and MAP as well as SVR were increased after CO2 insufflation (P < 0.01), while CI and SV were not affected. In contrast, in the abdominal wall lift group, CI and SV were significantly increased (P < 0.01), as was MAP (P < 0.01), while CVP, PCWP, MPAP, and SVR were not significantly affected. There was a significant difference in intraesophageal pressure between the two groups. In the pneumoperitoneum group, the intraesophageal pressure was increased by insufflation (P < 0.01) while, in the abdominal wall lift group, it was unaffected. In the pneumoperitoneum group the mean increases in cardiac filling pressures were of the same magnitude as the mean increase in the intraesophageal pressure. CONCLUSIONS: In healthy patients, abdominal wall lift increased cardiac index while pneumoperitoneum did not. Cardiac filling pressures and systemic vascular resistance were increased by pneumoperitoneum but unaffected by abdominal wall lift. The recorded elevated cardiac filling pressures during pneumoperitoneum may be only a reflection of the increased intra-abdominal pressure.

Abdominal Muscles↗

Conservative treatment of a huge abdominal wall hematoma after laparoscopic appendectomy.

We report a case of a 30-year-old male patient who presented with a huge abdominal wall hematoma 60 minutes after laparoscopic appendectomy. During surgery there had been no sign of abdominal wall bleeding. We found a lateral abdominal wall hematoma caused by rupture of the abdominal epigastric artery after trocar insertion. We conclude that trocar injury is a potentially preventable complication in laparoscopic surgery if certain precautions are taken. Abdominal wall hematoma secondary to injury of an epigastric vessel can be successfully treated with conservative management.

Abdominal Wall↗

Mesh incisional herniorrhaphy increases abdominal wall elastic properties: a mechanism for decreased hernia recurrences in comparison with suture repair.

BACKGROUND: An improved understanding of load-bearing soft tissue repair suggests that the mechanism for the improved outcomes after alloplastic incisional herniorrhaphy involves more than simple tissue replacement or material strength. We test the hypothesis that postrepair abdominal wall elastic properties are most predictive of successful abdominal wall reconstruction. METHODS: A rodent model of chronic incisional hernia formation was used. Midline incisional hernias were repaired primarily with suture (n = 24) or polypropylene mesh (n = 24). Rodents were sacrificed at serial postoperative time points over 60 days. Intact abdominal wall strips were cut perpendicular to the wound for tensiometric analysis. Biopsies of wound provisional matrix were obtained for biochemical analysis. RESULTS: Recurrent incisional hernia formation was significantly decreased in the mesh-repair group, compared with the suture-repair group (5/24 vs 14/24, P = .02). Mesh-repaired abdominal walls demonstrated significantly more elongation (P < .01) and less stiffness (P < .01). Toughness was equal between wounds, although the suture-repaired wounds had increased recovery of tensile strength (P < .01). There were no significant differences in collagen deposition after postoperative day 7. CONCLUSIONS: Mesh incisional herniorrhaphy increases abdominal wall elastic properties as measured by increased elongation and reduced stiffness. Increased abdominal wall elasticity after incisional hernia repair in turn results in lower recurrence rates.

Abdominal Wall↗

[Spontaneous rupture of the abdominal wall in cirrhotic patients with ascites].

The abdominal wall hernia is a common finding in cirrhotic patients. Spontaneous disruption of the abdominal wall through these herniae is an uncommon complication, is associated with a high mortality and should be considered a gastroenterologic emergency. It occurs through a skin ulceration over the hernia in the 70% of all cases. Intravascular expansion plus long antibiotic prophylaxis with anti-staphylococcal agents are the mainstays of medical therapy. The definitive treatment must be surgical. Each case must be evaluated individually to determine the optimal surgical management, not necessarily on an emergent basis. We report three new cases surviving this complication.

Abdominal Muscles↗

Prenatal diagnosis and management of the fetus with an abdominal wall defect.

Prenatal ultrasound has advanced our understanding of congenital abdominal wall defects. In addition to providing insights into the divergent embryological origins and natural history of abdominal wall defects, ultrasound has had an important impact on the management of these anomalies. For fetuses with gastroschisis, the changes in appearance of the bowel may suggest expeditious delivery. In cases of omphalocele, the presence of additional anomalies is significantly associated with the ultimate prognosis for these fetuses. Giant omphalocele may preclude vaginal delivery secondary to dystocia. Exstrophies of the cloaca and bladder are rare congenital abnormalities that often present complex management issues, including gender reassignment in cases of cloacal exstrophy, for those couples wishing to continue the pregnancy. We believe that the optimal management of a fetus diagnosed with an abdominal wall defect requires a coordinated effort among specialists from maternal fetal medicine, pediatric surgery, and pediatrics.

Abdominal Muscles↗

Abdominal wall lifting with subcutaneous wiring: an experience of 50 cases of laparoscopic cholecystectomy without pneumoperitoneum.

Abdominal wall lifting is a method to produce operative space between the anterior abdominal wall and the intra-abdominal organs during laparoscopic surgery. We devised a hanger lifting procedure for the anterior abdominal wall to avoid complications as well as reduce the costs related to the pneumoperitoneum. In our series, we performed 50 cases of laparoscopic cholecystectomy with this abdominal wall-lifting procedure. Though at the beginning we performed laparoscopic cholecystectomy by the pneumoperitoneum, we discarded the insufflator for this operation since starting the new procedure. There was no incidence of conversion to pneumoperitoneum and a fairly good operative view was achieved enabling a smooth laparoscopic cholecystectomy.

Abdominal Muscles↗

A new technique applicable to pediatric laparoscopic surgery: abdominal wall 'area lifting' with subcutaneous wiring.

BACKGROUND: Recently, the authors developed a unique method of laparoscopic surgery without pneumoperitoneum: "area lifting of the abdominal wall with subcutaneous wiring." METHODS: In this gasless procedure, the anterior abdominal wall is pulled upward by a pair of wires placed subcutaneously and held by thick sutures for "hanger lifting." Simultaneous lifting of a pair of subcutaneous wires across the abdomen, produces a wide, roof-shaped intraabdominal space sufficient for laparoscopic surgical procedures. The practical aspects of this gasless technique, as well as the authors' limited experience with this method in 24 children, ranging from 8 days to 15 years of age is presented. These children have had various pathologies including splenomegaly, rectal prolapse, ovarian cyst, gall stone, adrenal neuroblastoma, and abdominal wall abscess. CONCLUSIONS: Gasless laparoscopic surgery with double subcutaneous wiring is safe for children including neonates and those with respiratory compromise because all operative procedures are performed under normal abdominal pressure. Because of the highly elastic abdominal wall musculature inherent in children, this selective area lifting of abdominal wall creates a relatively larger peritoneal volume than in adults.

Abdominal Muscles↗

The split abdominal wall muscle flap--a simple, mesh-free approach to repair large diaphragmatic hernia.

PURPOSE: The authors present a technique to repair large diaphragmatic hernias that is simple, can be done primarily, and offers a durable closure with living tissue. METHODS: A review of congenital diaphragmatic hernias was performed for the period between January 1991 and August 2000. Repair types included primary repair, synthetic patch, or a split abdominal wall muscle flap. The split abdominal wall muscle flap is performed by downward rotation of the internal oblique and transversalis abdominal wall muscles. This repair requires that the initial subcostal incision be positioned at least 4 to 5 cm below the costal margin, low enough to insure an adequate length of muscle will be available to fill the defect. RESULTS: Eight of 158 children with congenital diaphragmatic hernia underwent repair by abdominal wall muscle flap. Five of 8 had complete agenesis. Five survived the newborn period. Of the survivors, 4 of 5 required an additional surgical procedure, but none have had a recurrent hernia. CONCLUSIONS: The split abdominal wall muscle flap is an effective technique to close large diaphragmatic hernias. The repair was carried out successfully in 8 patients with massive defects. In the surviving patients, the repair has proven to be a durable restoration of the diaphragm.

Abdominal Wall↗

Vertically transmitted hypoplasia of the abdominal wall musculature.

The prune belly syndrome (OMIM 100100) is an association of bladder dilation with hypoplasia of the abdominal wall muscles. This malformation sequence is due to early urethral obstruction. We report a family with abdominal wall muscular hypoplasia as an isolated defect, not associated with the urethral obstruction sequence. The proband is a q3-year-old male who presented with abdominal wall laxity and severe constipation. His mother, maternal grandmother and younger brother had varying degrees of abdominal wall muscular deficiency and constipation. His mother's condition was aggravated by her 2 pregnancies. This family shows vertical transmission (compatible with autosomal dominant or mitochondrial inheritance) of the abdominal phenotype of prune belly sequence without any evidence of urinary tract or renal pathology. The expression in the sons may remain incomplete because abdominal distention due to pregnancy will not occur.

Abdominal Muscles↗

Closure of complex abdominal wall defects with bilateral rectus femoris flaps with fascial extensions.

Large full-thickness abdominal wall defects present a difficult reconstructive problem. Synthetic mesh has significant drawbacks and should be used only as a temporizing measure. Ideally abdominal wall defects should be resurfaced with well-vascularized autologous fascia and skin. A variety of myofascial, myocutaneous, and myofasciocutaneous flaps have been described. This report describes two cases of near-total abdominal wall reconstruction using bilateral rectus femoris myocutaneous flaps with fasciocutaneous extensions of superficial thigh fascia and skin. In both cases the rectus femoris flaps and fascial extensions healed, and the patients went on to full recovery. In one patient the skin over the fascial extension did not survive and had to be debrided and the underlying vascularized fascia resurfaced with a skin graft. The extended rectus femoris flap is a reliable and versatile flap that leaves negligible functional deficits. The fascial extensions are reliable and well perfused and should be included in the reconstruction of larger abdominal wall defects. The skin overlying the fascial extensions is less reliable, and selective use is recommended.

Abdominal Muscles↗

Abdominal wall reconstruction with the free tensor fascia lata musculofasciocutaneous flap using intraperitoneal gastroepiploic recipient vessels.

The authors report their experience with a method for definitive abdominal wall reconstruction using the free tensor fascia lata musculofasciocutaneous flap anastomosed to the intraperitoneal gastroepiploic vessels. This is a single-stage reconstruction capable of reconstructing reliably a full-thickness defect involving any region of the abdominal wall. The fascial component of the flap reconstructs the abdominal wall with like tissue, and the cutaneous portion of the free tensor fascia lata provides a durable and aesthetically acceptable external cover. The intraperitoneal gastroepiploic artery and vein were the first-choice recipient vessels used in all three patients. These intraperitoneal recipient vessels allow uninterrupted fascial closure, restoring structural integrity to the abdominal wall, and allow the use of free flaps with short vascular pedicles. The authors present a series of three cases of full-thickness upper and lower abdominal wall reconstruction using this method, presenting its advantages compared with other methods.

Abdominal Neoplasms↗