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At least 721 records · Page 40Linked to original sources

Successful treatment of yolk sac tumor of the lower abdominal wall with lymph node metastases.

We report a case of a primary yolk sac tumor of the lower abdominal wall with inguinal lymph node metastases. To our knowledge, this is the first documented case originating in the lower abdominal wall. Radical surgery was performed, followed by combination chemotherapy consisting of bleomycin, vinblastine and cis-platinum. The patient has been free of disease for more than 2 years.

Abdominal Muscles↗

[Postoperative necrotizing fasciitis of the anterior abdominal wall].

Postoperative necrotizing fasciitis of the anterior abdominal wall is a serious and life-endangering complication of an acute progressive synergistic infective process. There is an absolute increase in its incidence rate attributable to a number of situations in modern life. Morphological and clinical studies are carried out on personal case material of 28 patients, followed up over a 3-year period. The presence of aerobic-anaerobic mixed polyinfection, consisting of average 3.75 bacterial species of which 1.43 aerobes and 2.32 anaerobes, is demonstrated microbiologically. Of the latter non-spore-bearing obligate anaerobes predominate among which B fragillis is the most common. As shown by the study, the process is characterized by slow initial course with ensuring rapid spreading by neighbourhood. The process reveals all signs of a mixed aerobic-anaerobic polyinfection, thereby necessitating subordination of both antibiotic therapy and surgical tactics to the latter.

Abdominal Muscles↗

Experimental evaluation of a new layered prosthesis exhibiting a low tensile modulus of elasticity: long-term integration response within the rat abdominal wall.

The use of a new type of prosthesis, Bard Composix (BC), constructed of two layers of polypropylene mesh (PP) and one layer of expanded polytetrafluoroethylene (ePTFE), could provide a good solution for hernia repair when both minimal adhesions and maximum collagenous infiltration are necessary. We experimentally evaluated long-term stability of this composite. In 15 Sprague-Dawley rats, a full thickness defect was created in the anterior abdominal wall and repaired with BC. Studies were performed over implantation intervals of 2, 4, and 6 months in strips obtained from the prosthesis-host tissue interfaces. Light microscopy, environmental scanning electron microscopy (ESEM), immunohistochemistry, and tensiometry were used. Overall findings provide evidence that PP and ePTFE association renders the alloy well suited for hernia repair, promoting a robust and durable alloplast-soft tissue union. At all points studied, the patch was well tolerated and meshes did not shrink, come loose, or migrate. Neovascularization continued 6 months after implantation. Ex vivo mechanical characterization demonstrated that the primary advantage of the new device stems from a low modulus of elasticity, a property that can be exploited to enhance mechanical load transfer from prosthetic materials to the relatively frail surrounding tissues. After implantation, adequate tensile strength and a low modulus of elasticity were detected in the restored zone, conferring great adaptability to the abdominal wall. In conclusion, the BC layered prosthesis proved suitable for implantation in abdominal wall defects, exhibiting favorable biocompatibility and integration with minimal side effects.

Animals↗

The tensor fascia lata free flap in abdominal-wall reconstruction.

The pedicled tensor fascia lata flap (TFL flap) is a method of choice for abdominal-wall reconstruction. Frequently, the size and location of the defect produce this option. Microsurgical transfer may overcome these disadvantages. Therefore, the ability of the TFL free flap to reconstruct complex abdominal wounds was evaluated. Seven patients with full-thickness abdominal-wall defects reconstructed by TFL free flaps were reviewed. Their average age was 44.6 years (range: 27 years to 59 years); follow-up averaged 10.5 months (range: 2 months to 18 months). Fifty-seven percent of the wounds were either infected or contaminated; the defect averaged 15 cm x 26 cm Six 85.7 percent) of the wounds involved the epigastrum. No total flap loss was seen, but three flaps developed distal tip necrosis (42.9%). Microsurgical transfer of the TFL free flap overcomes the limitations of the arc of rotation seen with the pedicled flap. It increases the vascularity of the distal portion of the flap. The TFL free flap is therefore an option in abdominal wounds, particularly those with defects of large size or supraumbilical location.

Abdominal Injuries↗

Laparoscopic resection of an abdominal wall desmoid using a modified suture traction technique: the "marionette trick".

Desmoids are rare mesenchimal tumors that may originate also inside the abdomen or in the abdominal wall. These tumors are biologically characterized by a tendency to local growth, and only rarely are they able to develop distant metastases. Surgical excision usually is the best treatment with a chance of a cure. In the few reports on intraabdominal or abdominal wall desmoids, open surgery always was performed. The first case of successful laparoscopic resection of a symptomatic anterior wall desmoid tumor with intraabdominal growth is reported. During the procedure, it was difficult to mobilize and grasp the mass using the common laparoscopic instruments, but with the help of the "marionette trick," modified suture traction technique, the tumor could be removed easily using only three trocars. With four traction sutures minimizing the wall trauma, the trick made it possible to mobilize the mass in at least, seven directions, according to the principles of physical forces and vectors. This simple trick can be helpful for other common laparoscopic procedures, avoiding the insertion of sometimes ineffective instruments through more traumatic trocars.

Abdominal Neoplasms↗

Abdominoplasty and abdominal wall rehabilitation: a comprehensive approach.

Standard abdominoplasty techniques involve a low horizontal or W skin excision, muscle plication, and umbilical transposition. Newer techniques include suction-assisted lipectomy, the use of high lateral tension with fascial suspension, and external oblique muscle advancement. The author has modified these traditional procedures and added new techniques to improve the aesthetic and functional results of the abdominoplasty procedure. This modification provides a comprehensive approach to abdominal wall aesthetic improvement and rehabilitation. The comprehensive approach described includes four components: the "U-M dermolipectomy," "V umbilicoplasty," the rectus abdominis "myofascial release," and suction-assisted lipectomy. The patient is marked while standing for areas of suction lipectomy and undermining. The lower incision is designed as an open U with the lateral limbs placed inside the bikini line. The upper incision is a lazy M with the higher peaks located at the level of the flanks. Subcutaneous hydration is achieved to perform suction along the flanks, waistline, and iliac areas. Gentle suction of the flaps is also performed. The umbilicus is cored out in a heart shape. The flaps within the U-M marks are excised, and the undermining is performed to the xiphoid and costal margins. The rectus diastasis is marked, and the anterior rectus fascia is incised at the junction of the medial third with the central third of the width of the rectus sheath. Horizontal figure-eight plication sutures by using the lateral fascial edge enable easier infolding of the central tissue. The new recipient of the umbilicus is made by an incision in a V shape on the abdominal flap. The umbilicus is telescoped, and the triangular flap of the abdomen is sutured to the triangular defect of the umbilicus. Skin flap fixation to the umbilicus relieves tension in the lower portion of the flap. The upper skin flap, which is cut in an M manner, provides lateral tension and matches the length of the lower flap. A standard fascial suspension is used and closure is performed in layers. The techniques described here are intertwined procedures. Each facilitates the accomplishment of the other procedure, and they complement each other. They all attain the 12 objectives of the abdominoplasty described. These combined techniques have been used in 104 patients in a period of 11 years. Complications were minimal and easily manageable, except for one patient who required excision of a pseudobursa and retightening of the lower quadrants of the abdominal wall musculature to correct extreme lordosis. A comprehensive approach for the treatment of complex abdominal wall aesthetic and functional defects is presented. These require thoughtful integration of the four components mentioned. This approach has allowed predictable, reproducible, and aesthetically pleasing results.

Abdominal Muscles↗

Abdominal wall reconstruction with an expanded rectus femoris flap.

The expanded rectus femoris flap has several advantages for massive abdominal wall reconstruction. The expanded flap can easily reach the xyphoid, and it has impressive width. The donor site can be closed primarily with an acceptable scar. The muscle remains innervated and functional, which may help prevent bulging. When performing the surgery in conjunction with intra-abdominal procedures, such as fistula repair, a simultaneous two-team approach can be used without awkward positioning. The expansion provides some thinning of the muscle, providing a contour more like that of the native abdomen. Its use should be considered in cases of abdominal wall defects extending above the umbilicus.

Abdominal Muscles↗

An unusual left-sided abdominal-wall defect.

Gastroschisis is a congenital abdominal-wall defect (AWD) that typically occurs to the right of the umbilicus. Rarely, a mirror variation of the above may occur with a defect to the left of the umbilical cord. This report concerns a neonate born with an unusual AWD in the left upper quadrant, distant from an intact umbilicus.

Gastroschisis↗

Bimodal distribution of the blood supply to lower abdominal fat: histological study of the microcirculation of the lower abdominal wall.

Fat necrosis is a common postoperative complication in transverse rectus abdominis muscle flap breast reconstruction. A histological quantification of the blood supply to the lower abdominal fat was undertaken to define this problem further. One hundred eighty sections, 1.5 cm(2) in size, were studied from one half of the lower abdomen in 10 fresh cadavers. These represent three different depths of fat (superficial, middle, deep) and six different anatomic areas (upper, middle, and lower sectors of the medial and lateral parts of the hemiabdomen). The average diameter, number of blood vessels, and the total vascular area were measured in each section. The average diameter of the blood vessels was greater in the superficial compared with the mid fat layer (p = 0.02). The total vascular area was greater in the deep compared with the mid fat layer (p = 0.01) and the superficial fat layer (p = 0.05). The number of blood vessels was also significantly higher in the deep fat layer compared with the mid fat layer (p = 0.001) and the superficial fat layer (p = 0.01). The lower medial area of the lower anterior abdominal wall contained the largest number and average diameter of blood vessels whereas the mid lateral area contained the smallest number and average diameter; however, this did not reach significance (p = 0.1 and 0.2). The results of this study are in keeping with the bimodal vascular supply to the subcutaneous fat of the anterior abdominal wall. The deep and the superficial fat layers are supplied more richly with vessels with a larger diameter whereas the intermediate fat layer is supplied from the terminal branches of these vessels.

Abdominal Wall↗

Effect of increased and reduced tension on the mechanical properties of healing wound in the abdominal wall.

Using rabbits as experimental animals, the changes of the mechanical characteristics in different areas of healing abdominal wall wounds were investigated. Wounds closed under 'hyper-tension' and under 'reduced tension' were investigated, as well as wounds closed with Prolene and steel sutures (elastically yielding or immobilizing, respectively). The mechanical testing was performed after healing periods of varying length up to 4 weeks, and the following four parameters were measured: the breaking strength, the energy absorption, the maximum strain, and the elastic stiffness. The investigation showed that strong tension as well as immobilization of the edges of the wound cause a functionally weaker abdominal wall wound. The possible clinical importance of the results is discussed.

Abdominal Muscles↗

Life-threatening abdominal wall hematoma in a chronic renal failure patient after a single dose of enoxaparin.

We present a patient with chronic renal insufficiency who developed a massive posttraumatic abdominal wall hematoma after a single therapeutic dose of enoxaparin administered during workup of chest pain. Surgical evacuation of the hematoma was required to control life-threatening hemorrhage. Low-molecular-weight heparin use is not without risk and mandates appropriate indication and accurate dosing. Bleeding can occur at any site during heparin therapy, and abdominal wall hematoma should be considered as a source after traumatic injury.

Abdominal Injuries↗

Abdominal wall abscess formation two years after laparoscopic cholecystectomy.

BACKGROUND: Spillage of gallstones within the subcutaneous tissue during laparoscopic cholecystecomy may lead to considerable morbidity. METHODS: We describe an abdominal wall abscess formation in a 50-year-old female that developed 24 months after a laparoscopic cholecystectomy. RESULTS: Spilled gallstones at the umbilical port site went undetected. Subsequently, an umbilical port-site abscess formed and was treated 2 years later. CONCLUSION: Any patient with a foreign body in the subcutaneous tissues after a laparoscopic cholecystectomy should be considered to have a retained stone. Use careful dissection, copious irrigation, and a retrieval device to avoid stone spillage. If spillage does occurs, percutaneous drainage and antibiotics followed by open retrieval of the stones should achieve adequate results during those delayed presentations of abdominal wall abscesses.

Abdominal Wall↗

Echocardiography in the investigation of anterior abdominal wall defects in the fetus.

Of 20 pregnancies referred for fetal echocardiography with a diagnosis of anterior abdominal wall defect, congenital heart disease was present in eight of the 17 with exomphalos and in none of the three with gastroschisis. Four of these eight affected pregnancies were terminated because trisomy 18 was diagnosed, of the remaining four, only one baby survived infancy. We conclude that ultrasound investigation of the fetal heart is an important part of the diagnostic assessment of anterior abdominal wall defect if an accurate prognosis and appropriate obstetric management are to be provided.

Abdominal Muscles↗

Gastrointestinal fistulas associated with large abdominal wall defects: experience with 43 patients.

Experience with 43 patients with gastrointestinal fistulas associated with a large abdominal wall defect is presented. The overall mortality rate was 60 per cent; 37 per cent in patients who underwent the primary procedure in the home unit and 74 per cent in those from elsewhere. An average of five operations per patient was performed. The abdominal wall defect developed spontaneously as a consequence of postoperative peritonitis in 24 patients (mortality rate, 71 per cent) and was created intentionally as a part of the 'open management' in 19 cases (mortality rate, 47 per cent). Errors in management were identified in 63 per cent of the patients and this adversely influenced the outcome. Patients with this condition should be referred early to tertiary care facilities where diversion of the intestinal leak away from the defect, prompt control of the associated intra-abdominal infection and adequate handling of the defect itself can be performed.

Abdominal Muscles↗

Biomechanical studies of rabbit abdominal wall. Part I.--The mechanical properties of specimens from different anatomical positions.

Using biomechanical investigations of the intact abdominal wall of the rabbit, the influence of the position (location) of specimens on the mechanical characteristics (the measured variables) was analysed. The intact abdominal wall was investigated in the transverse plane as well as in the longitudinal plane. The mechanical testing was performed using a materials testing machine (Alvetron). The testing revealed that the results for the different measured parameters depended on the position from which specimens originated. The influence of the original position of specimens on the mechanical characteristics was not only due to different quantities and qualities of tissue from different positions, but also might be due to differences in fibre direction in the different specimens. The results obtained are related to biomechanical investigations of wound healing in general.

Abdominal Muscles↗

Anaerobic, non-clostridial fasciitis and myonecrosis of the abdominal wall. Pure anaerobic infection originating from neglected inflammation of an urachal remnant.

A pure anaerobic infection of the abdominal wall of a 40-year-old man is described. The infection originated from an urachal remnant. Seven different bacterial strains were isolated. Even though no clostridia were involved, the infection caused extensive necrosis of the abdominal wall including both fascia and muscles.

Abdominal Muscles↗

[Abdominal wall hematoma as a severe complication of anticoagulation. Clinical picture and ultrasonic diagnosis].

In 4 women patients aged over 60 years under anticoagulation, abdominal pain, which was in part clearly localizable, and signs of acute bleeding suddenly occurred. All were under treatment with marcoumar, while one was also in the transitional phase from parenteral to oral therapy with heparin. Initially, apart from pain on pressure, there were no local signs of bleeding. In the acute stage it was impossible to distinguish clinically between abdominal wall bleeding and intraperitoneal bleeding. Ultrasound provided the diagnosis of abdominal wall bleeding in all cases. All of them were successfully treated by conservative means.

Abdominal Muscles↗