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Efficacy and Safety Evaluation of Energy Devices in Bench Surgery for Pancreas Transplantation.

Authors :
Kaku, Keizo
Kubo, Shinsuke
Sato, Yu
Mei, Takanori
Noguchi, Hiroshi
Okabe, Yasuhiro
Nakamura, Masafumi
Source :
Journal of Surgical Research. Jun2024, Vol. 298, p149-159. 11p.
Publication Year :
2024

Abstract

Bench surgery for the preparation of deceased donor pancreatic grafts is labor-intensive and time-consuming. We hypothesized that energy devices could be used during bench surgery to decrease the bench surgery time. However, because bench surgery has two unique characteristics, wet conditions and no blood flow in the vessels, it is necessary to verify the safety and efficacy under such conditions. In an animal tissue model, we validated both ultrasonic and bipolar energy devices: Harmonic Shears and the LigaSure (LS) vessel-sealing device by evaluating heat spread and pressure resistance under bench surgery conditions. In a clinical evaluation of the LS, we compared the outcomes of 22 patients in two different bench surgery groups: with and without the use of the LS. Clinically, the bench surgery time was significantly shorter in the LS group than that in the conventional group (P < 0.001). In the animal tissue experiments, the highest temperature in bench surgery conditions was 60.4°C after 1 s at a 5-mm distance in the LS group. Pressure resistance of ≥ 750 mmHg was achieved in almost all trials in both veins and arteries, with no difference between Harmonic Shears and LS. There was more surgical smoke visually in bench conditions versus in dry conditions and under half bite versus full bite conditions. The encouraging results of our exploratory clinical and animal studies of the energy devices suggest that they may be useful in the setting of bench surgery. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00224804
Volume :
298
Database :
Academic Search Index
Journal :
Journal of Surgical Research
Publication Type :
Academic Journal
Accession number :
177565110
Full Text :
https://doi.org/10.1016/j.jss.2024.03.009