Back to Search Start Over

A learning curve in using organ retractor for single-incision laparoscopic right colectomy

Authors :
Hidetoshi Fukuoka
Kenji Tanaka
Takashi Nonaka
Terumitsu Sawai
Tetsuro Tominaga
Hiroaki Takeshita
Toshio Shiraishi
Yorihisa Sumida
Masato Araki
Takeshi Nagayasu
Kazuo To
Kiyoaki Hamada
Source :
Scientific Reports, Vol 11, Iss 1, Pp 1-10 (2021), Scientific Reports
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

Single-incision laparoscopic surgery (SILS) has the potential to improve perioperative outcomes, including less postoperative pain, shorter operation time, less blood loss, and shorter hospital stay. However, SILS is technically difficult and needs a longer learning curve. Between April 2016 and September 2019, a total of 198 patients with clinical stage I/II right colon cancer underwent curative resection. In the case of the SILS approach, an organ retractor was usually used to overcome SILS-specific restrictions. The patients were divided into two groups by surgical approach: the SILS with organ retractor group (SILS-O, n = 33) and the conventional laparoscopic surgery group (LAC, n = 165). Clinical T status was significantly higher in the LAC group (p = 0.016). Operation time was shorter and blood loss was lower in the SILS-O group compared to the LAC group (117 vs. 197 min, p = 0.027; 10 vs. 25 mL, p = 0.024, respectively). In the SILS-O group, surgical outcomes including operation time, blood loss, number of retrieved lymph nodes, and postoperative complications were not significantly different between those performed by experts and by non-experts. Longer operation time (p = 0.041) was significantly associated with complications on univariate and multivariate analyses (odds ratio 2.514, 95%CI 1.047–6.035, p = 0.039). SILS-O was safe and feasible for right colon cancer. There is a potential to shorten the learning curve of SILS using an organ retractor.

Details

ISSN :
20452322
Volume :
11
Database :
OpenAIRE
Journal :
Scientific Reports
Accession number :
edsair.doi.dedup.....0138ebe50f1bbb3c6f331b238111c57c
Full Text :
https://doi.org/10.1038/s41598-021-86168-4