journal article Oct 05, 2024

Evaluation of the da Vinci single-port system in colorectal cancer surgery: a scoping review

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References
37
[1]
van der Pas MH et al (2013) Laparoscopic versus open surgery for rectal cancer (COLOR II): short-term outcomes of a randomised, phase 3 trial. Lancet Oncol 14(3):210–218 10.1016/s1470-2045(13)70016-0
[2]
Rein LKL et al (2023) Robotic versus laparoscopic approach for left-sided colon cancer: a nationwide cohort study. Colorectal Dis 25(12):2366–2377 10.1111/codi.16803
[3]
Robotic versus laparoscopic surgery for middle and low rectal cancer (REAL): short-term outcomes of a multicentre randomised controlled trial

Qingyang Feng, Weitang Yuan, Taiyuan Li et al.

The Lancet Gastroenterology & Hepatology 2022 10.1016/s2468-1253(22)00248-5
[4]
Cianci S et al (2019) Robotic single-port platform in general, urologic, and gynecologic surgeries: a systematic review of the literature and meta-analysis. World J Surg 43(10):2401–2419 10.1007/s00268-019-05049-0
[5]
Covas Moschovas M et al (2021) Applications of the Da Vinci single port (SP) robotic platform in urology: a systematic literature review. Minerva Urol Nephrol 73(1):6–16 10.23736/s2724-6051.20.03899-0
[6]
PRISMA Extension for Scoping Reviews (PRISMA-ScR): Checklist and Explanation

Andrea C. Tricco, Erin Lillie, Wasifa Zarin et al.

Annals of Internal Medicine 2018 10.7326/m18-0850
[7]
Valizadeh A et al (2022) Abstract screening using the automated tool Rayyan: results of effectiveness in three diagnostic test accuracy systematic reviews. BMC Med Res Methodol 22(1):160 10.1186/s12874-022-01631-8
[8]
Salem JF et al (2021) Initial clinical experience with Single-Port robotic (SP r) left colectomy using the SP surgical system: description of the technique. Surg Endosc 35(7):4022–4027 10.1007/s00464-020-08159-2
[9]
Marks JH et al (2020) Single-port robotic left colectomy: first clinical experience using the SP robot (rSILS). Tech Coloproctol 24(1):57–63 10.1007/s10151-019-02129-0
[10]
Choo JM et al (2022) Application of a single-port robotic system for right colectomy: a novel suprapubic approach. Dis Colon Rectum 65(11):e1029 10.1097/dcr.0000000000002406
[11]
Covas Moschovas M et al (2021) Da Vinci SP platform updates and modifications: the first impression of new settings. J Robot Surg 15(6):977–979 10.1007/s11701-021-01248-x
[12]
Dillman RO et al (2009) Identification of 12 or more lymph nodes in resected colon cancer specimens as an indicator of quality performance. Cancer 115(9):1840–1848 10.1002/cncr.24185
[13]
Vogel JD et al (2022) The American Society of Colon and Rectal Surgeons Clinical Practice Guidelines for the Management of Colon Cancer. Dis Colon Rectum 65(2):148–177 10.1097/dcr.0000000000002323
[14]
Choi MS et al (2022) Learning curve for single-port robot-assisted rectal cancer surgery. Ann Surg Treat Res 102(3):159–166 10.4174/astr.2022.102.3.159
[15]
Liu R et al (2022) Single-port (SP) robotic pancreatic surgery using the Da Vinci SP system: a retrospective study on prospectively collected data in a consecutive patient cohort. Int J Surg 104:106782 10.1016/j.ijsu.2022.106782
[16]
Celotto F et al (2024) Da Vinci single-port robotic system current application and future perspective in general surgery: a scoping review. Surg Endosc. https://doi.org/10.1007/s00464-024-11126-w 10.1007/s00464-024-11126-w
[17]
Noh GT et al (2019) Initial clinical experience of pure single-incision robotic right hemicolectomy with Da Vinci SP platform. J Minim Invasive Surg 22(4):181–183 10.7602/jmis.2019.22.4.181
[18]
Liu S, Kelley SR, Behm KT (2021) Single-port robotic transanal minimally invasive surgery (SPR-TAMIS) approach to local excision of rectal tumors. Tech Coloproctol 25(2):229–234 10.1007/s10151-020-02286-7
[19]
Marks JH et al (2020) rSILS: initial clinical experience with single-port robotic (SPr) right colectomy. Tech Coloproctol 24(8):817–822 10.1007/s10151-020-02218-5
[20]
Noh GT et al (2020) Initial clinical experience of single-incision robotic colorectal surgery with Da Vinci SP platform. Int J Med Robot 16(3):e2091 10.1002/rcs.2091
[21]
Kim HJ et al (2021) An initial experience with a novel technique of single-port robotic resection for rectal cancer. Tech Coloproctol 25(7):857–864 10.1007/s10151-021-02457-0
[22]
Marks JH et al (2021) SP rTaTME: initial clinical experience with single-port robotic transanal total mesorectal excision (SP rTaTME). Tech Coloproctol 25(6):721–726 10.1007/s10151-021-02449-0
[23]
Marks JH et al (2021) Video demonstration of an initial single-port robotic transanal total mesorectal excision. Dis Colon Rectum 64(8):e472–e473 10.1097/dcr.0000000000002139
[24]
Song SH et al (2021) Initial experience with a suprapubic single-port robotic right hemicolectomy in patients with colon cancer. Tech Coloproctol 25(9):1065–1071 10.1007/s10151-021-02482-z
[25]
Choi MS et al (2022) Single-port robot-assisted abdominoperineal resection: a case review of the first four experiences. Ann Coloproctol 38(1):88–92 10.3393/ac.2021.00395.0056
[26]
Choi MS et al (2024) Learning curve for single-port robot-assisted colectomy. Ann Coloproctol 40(1):44–51 10.3393/ac.2022.00745.0106
[27]
Piozzi GN et al (2022) Da Vinci Single-Port (SP) robotic transverse colectomy for mid-transverse colon cancer. Tech Coloproctol 26(8):681–682 10.1007/s10151-022-02603-2
[28]
Piozzi GN et al (2022) Da Vinci SP robotic approach to colorectal surgery: two specific indications and short-term results. Tech Coloproctol 26(6):461–470 10.1007/s10151-022-02597-x
[29]
Alshalawi W, Lee CS, Lee YS (2023) Single-port robotic intersphincteric resection for very low rectal cancer with the Da Vinci SP platform. Asian J Surg 46(2):1056–1057 10.1016/j.asjsur.2022.07.131
[30]
Keller DS et al (2023) Single-port robotic right hemicolectomy with intracorporeal anastomosis. Colorectal Dis 25(8):1735–1736 10.1111/codi.16632
[31]
Kim HS et al (2023) Short-term outcomes of single-incision robotic colectomy versus conventional multiport laparoscopic colectomy for colon cancer. J Robot Surg 17(5):2351–2359 10.1007/s11701-023-01666-z
[32]
Kim HJ et al (2024) Comparison of the efficacy and safety of single-port versus multi-port robotic total mesorectal excision for rectal cancer: a propensity score-matched analysis. Surgery 175(2):297–303 10.1016/j.surg.2023.09.036
[33]
Kim HJ et al (2023) Single-port robotic intersphincteric resection for the treatment of rectal cancer. Surg Laparosc Endosc Percutan Tech 33(3):249–255 10.1097/sle.0000000000001179
[34]
Kim HS et al (2023) Single-incision robotic colorectal surgery with the Da Vinci SP(R) surgical system: initial results of 50 cases. Tech Coloproctol 27(7):589–599 10.1007/s10151-023-02791-5
[35]
Lim JH et al (2023) Single-port laparoscopic versus single-port robotic right hemicolectomy: postoperative short-term outcomes. Int J Med Robot 19(3):e2509 10.1002/rcs.2509
[36]
Marks JH et al (2023) A prospective phase II clinical trial/IDEAL Stage 2a series of single-port robotic colorectal surgery for abdominal and transanal cases. Colorectal Dis 25(12):2335–2345 10.1111/codi.16788
[37]
Picciariello A et al (2023) Robotic abdominoperineal resection for T4b rectal cancer using the Da Vinci SP platform. Tech Coloproctol 27(11):1119–1122 10.1007/s10151-023-02792-4
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Published
Oct 05, 2024
Vol/Issue
76(7)
Pages
2515-2520
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Cite This Article
Arcangelo Picciariello, Alfredo Annicchiarico, Gaetano GALLO, et al. (2024). Evaluation of the da Vinci single-port system in colorectal cancer surgery: a scoping review. Updates in Surgery, 76(7), 2515-2520. https://doi.org/10.1007/s13304-024-02014-y