Effect of heating insufflation tube of AirSeal system on laparoscopic surgery

Author:

Yoshimatsu Gumpei1,Sahara Kurumi1,Ohno Ryo1,Kajitani Ryuji1,Munechika Taro1,Matsumoto Yoshiko1,Nagano Hideki1,Watanabe Toshifumi1,Aisu Naoya1,Yoshida Yoichiro1,Hasegawa Suguru1

Affiliation:

1. Fukuoka University Hospital

Abstract

Abstract The AirSeal system (CONMED, NY, USA) can outstandingly keep pneumoperitoneum stable. However, water droplets form on the access port, impairing the performance of comfortable surgical procedures because of the resultant wet surgical field. This study was performed to clarify the mechanism of water droplet formation and to prevent it. Condensation was observed on the AirSeal system. A heater was wrapped around the tri-lumen tube, and the heating effect was assessed. The simulator experiments revealed that condensation formed in the tri-lumen tube and on the wall of the access port. The accumulated weight of the condensation on the wall of the access port was 41.6 g in the Heated group, 138.2 g in the Control group, and 479.4 g in the Cooled group. In the clinical assessment, the accumulated volume of the condensation attached to the inside wall was significantly smaller in the Heated group than in the Unheated group (111.7 g vs. 332.9 g, respectively). We clarified that the volume of condensation attached to the wall of the access port depended on the temperature of the tri-lumen tube. The clinical study revealed that the condensation on the access port was reduced by heating the tri-lumen tube. The development of a novel heating device for the insufflation tube would be effective and useful.

Publisher

Research Square Platform LLC

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