Related Experiment Video
Updated: Mar 23, 2026

Creation of Abdominal Adhesions in Mice
Published on: August 27, 2016
Histopathological Response and Adhesion Formation After Omentectomy with Ultrasonic Energy, Bipolar Sealing, and
Gultekin Ozan Kucuk1, Metin Ertem2, Nuray Kepil3
1Department of General Surgery, Samsun Education and Research Hospital, Samsun, Turkey.
Abstract:
This study was designed to evaluate the histopathological response and intra-abdominal adhesion formation after an omentectomy in rats using the bipolar vessel-sealing device, ultrasonic coagulator, and suture ligation techniques. Forty Wistar albino rats were used, divided into four random groups. The rats underwent a midline laparotomy, and a partial omentectomy was performed using a 3-0 silk suture with suture ligation in group 1, bipolar device in group 2, and ultrasonic coagulator in group 3; only a laparotomy was performed on the control group. Lateral thermal damage was examined the same day, and a piece of the omentum was left in the animals to be examined on postoperative day 15. A relaparotomy was performed to assess adhesion formation and histopathological response. In pairwise comparisons, there was no statistically significant difference among the ultrasonic device, bipolar device, and suture ligation groups in terms of microscopic adhesion scoring; however, the scores of the bipolar device and suture ligation groups were significantly higher compared with those of the control group (p < 0.01). Furthermore, the macroscopic adhesion scores were significantly lower for the ultrasonic device group when compared with those of the bipolar device and suture ligation groups (p < 0.05 and p < 0.01). The ultrasonic device seems to be superior to the bipolar device and suture ligation in terms of macroscopic adhesion formation, but no significant difference was found in terms of the histopathological response in rats following an omentectomy. Further research may be required.
More Related Videos
20:33A Case Series of Successful Abdominal Closure Utilizing a Novel Technique Combining a Mechanical Closure System with a Biologic Xenograft that Accelerates Wound Healing
Published on: July 4, 2019
11:44Establishment of a Rat Model for Intrauterine Adhesions via Dual Injury: Curettage and Infection
Published on: October 3, 2025