PubMed Health⌕ Search

PubMed · 15904600

Safe entry techniques during laparoscopy: left upper quadrant entry using the ninth intercostal space--a review of 918 procedures.

Abstract

Surgeons performing sophisticated endoscopic operations must be well versed in alternate laparoscopic access methods to address evolving patient expectations and safety requirements. The safety of left upper quadrant laparoscopic entry in patients with prior surgeries and abdominal adhesions was evaluated. Laparoscopic surgery was performed for various indications on patients with prior surgical scars and anticipated risk of adhesions at the primary umbilical port site. All laparoscopies performed from July 1998 through June 2004 were analyzed. Of the 918 laparoscopies, 504 patients (54.9%) were found to have involvement of their umbilicus with adhesions that could have affected the traditional umbilical primary port entry. Left ninth intercostal space was used for Veres needle entry, and the primary trocar was placed in the left upper quadrant space. Of the 504 potentially risky entries, there were two (0.39%) Veres-needle related and zero trocar-related injuries. All surgical procedures were accomplished laparoscopically, and all entries were accomplished by the left upper quadrant entry technique. Therefore left upper quadrant entry technique is a safe and easily learned alternate access technique.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Neena Agarwala, C Y Liu. Safe entry techniques during laparoscopy: left upper quadrant entry using the ninth intercostal space--a review of 918 procedures.. https://doi.org/10.1016/j.jmig.2004.12.026

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Experience with management of anterior abdominal wall defects using bovine pericard.

During 5 years from 1999 until 2003, our experience with 29 (100%) neonates managed for anterior abdominal wall defects is presented. Twenty-one (72%) neonates presented with gastroschisis and 8 (28%) neonates with giant omphaloceles. The male:female ratio was almost equal in gastroschisis (1:1) while a male predominance was observed in omphaloceles (6:1). A primary closure of the defect was possible in 5 (17%) cases and a single patch along with skin closure was achieved in a further 9 (31%) cases. In 15 (52%) neonates the defect was large and two patches were employed to sufficiently cover the defect. All patients (97%), except one (mortality due to extreme prematurity), were managed successfully. Depending upon the size of the defect and the metabolic condition of the neonate, the defect closure was completed after a mean of 85.7 days. Special protocols were created to manage the bovine pericard patches, which behaved differently to lyophilized dura patches previously used at our center. Integration of the patches was successful in 28 (97%) neonates; however, one neonate with gastroschisis presented significant challenges in the management. Bovine pericard patches are optimal biomaterials for the closure of anterior abdominal wall defects in gastroschisis and omphaloceles.

Abdominal Wall↗

Macroporous condensed poly(tetrafluoroethylene). I. In vivo inflammatory response and healing characteristics.

This study was designed to determine whether the novel spatial geometry of macroporous condensed poly(tetrafluoroethylene) (cPTFE) favorably affects the in vivo repair process. Specifically, the macroporous surface geometry and the reduced material thickness contribute to better healing characteristics. For this purpose, three other materials used for abdominal wall repair were selected, expanded poly(tetrafluoroethylene) (ePTFE), low-weight poly(propylene) (lwPP), and high-weight poly(propylene) (hwPP). Samples of each material (1 x 2 cm, n = 4) were implanted subcutaneously in rats for 7, 28, or 56 days. After sacrificing the animals, at each time point, the tissue implant sites were subjected to morphometric analysis and evaluation of inflammatory and wound-healing tissue characteristics. Although the fibrous capsule thickness did not significantly vary among the four materials (p > 0.05), cPTFE consistently led to the most mature fibrous capsule. However, ePTFE showed the greatest tissue-material integration. Both PP materials presented various levels of tissue integration, but they were characterized by significant early inflammation and increased foreign body reaction around the mesh openings, especially for hwPP. In contrast, cPTFE did not induce extensive inflammation or elevated foreign body reaction around its mesh openings. We conclude that cPTFE combines the inherent PTFE biocompatibility with low polymer surface area (large mesh openings, reduced material thickness) leading to a better inflammatory and wound healing response compared to available materials used in abdominal wall reconstruction.

Abdominal Wall↗

[Plastic surgical considerations of conservative weight loss in the treatment of morbid obesity].

BACKGROUND: According to the literature, conservative weight loss seems to be ineffective for morbidly obese subjects. Nevertheless, the significance of nonsurgical strategies for the treatment of morbid obesity is still unclear. PATIENTS: From 1999 to 2003, 197 reconstructive operations were performed on 120 morbidly obese patients. Initial body mass index (BMI) was higher than 35-40, and weight loss exceeded 40% of the original body weight. RESULTS: Gastric banding was performed in 66% of the patients; 34% reduced their body weight by conservative means. Conservative weight loss could be achieved at each level of BMI. CONCLUSION: Conservative weight loss is a valuable option for the treatment of morbid obesity in a selected group of patients. Condiolates candidates for conservative weight loss should be selected carefully by a multidisciplinary team with psychiatric expertise.

Abdominal Wall↗