Journal of Surgery Concepts & Practice >
Robotic-assisted surgical systems in treatment of breast cancer: applications and prospects
Received date: 2024-08-05
Online published: 2025-01-23
In recent years, minimally invasive surgical techniques represented by endoscopic techniques and robotic surgical systems have become a new trend in the development of surgical treatment. With the advantages of precision, minimally invasive and aesthetics, robotic surgery has been more and more widely used in the field of breast surgery. By analysing literature, this paper reviewed the application of robotic surgery in breast cancer treatment in recent years, including the development of the technology, feasibility and safety of the surgery, etc., so as to provide a theoretical basis for the application of robotic surgical systems in breast cancer treatment.
Key words: Breast cancer; Robotic surgical system; Mastectomy; Lymph nodes dissection
ZHAO Xin , GAO Peng , CHEN Jie . Robotic-assisted surgical systems in treatment of breast cancer: applications and prospects[J]. Journal of Surgery Concepts & Practice, 2024 , 29(05) : 376 -381 . DOI: 10.16139/j.1007-9610.2024.05.02
| [1] | ARNOLD M, MORGAN E, RUMGAY H, et al. Current and future burden of breast cancer: global statistics for 2020 and 2040[J]. Breast, 2022,66:15-23. |
| [2] | WYLD L, AUDISIO R A, POSTON G J. The evolution of cancer surgery and future perspectives[J]. Nat Rev Clin Oncol, 2015, 12(2):115-124. |
| [3] | DIANA M, MARESCAUX J. Robotic surgery[J]. Br J Surg, 2015, 102(2):e15-e28. |
| [4] | YU H Y, FRIEDLANDER D F, PATEL S, et al. The current status of robotic oncologic surgery[J]. CA Cancer J Clin, 2013, 63(1):45-56. |
| [5] | MEADOWS M. Robots lend a helping hand to surgeons[J]. FDA consumer, 2002, 36(3):10-15. |
| [6] | ASHRAFIAN H, CLANCY O, GROVER V, et al. The evolution of robotic surgery: surgical and anaesthetic aspects[J]. Br J Anaesth, 2017, 119(suppl_1):i72-i84. |
| [7] | JAIN Y, LANJEWAR R, SHINDE R K. Revolutionising breast surgery: a comprehensive review of robotic innovations in breast surgery and reconstruction[J]. Cureus, 2024, 16(1):e52695. |
| [8] | AUTORINO R, KAOUK J H, STOLZENBURG J U, et al. Current status and future directions of robotic single-site surgery: a systematic review[J]. Eur Urol, 2013, 63(2):266-280. |
| [9] | TOESCA A, PERADZE N, GALIMBERTI V, et al. Robotic nipple-sparing mastectomy and immediate breast reconstruction with implant: first report of surgical technique[J]. Ann Surg, 2017, 266(2):e28-e30. |
| [10] | VOCI A, LEE D, HO E, et al. Impact of port site scar on perception of patients with breast cancer: patient-reported outcomes[J]. Breast Cancer Res Treat, 2018, 170(3):569-572. |
| [11] | PARK K U, CHA C, POZZI G, et al. Robot-assisted nipple sparing mastectomy: recent advancements and ongoing controversies[J]. Curr Breast Cancer Rep, 2023, 15(2):127-134. |
| [12] | SARFATI B, HONART J F, LEYMARIE N, et al. Robotic da Vinci Xi-assisted nipple-sparing mastectomy: first clinical report[J]. Breast J, 2018, 24(3):373-376. |
| [13] | FARR D E, HADDOCK N T, TELLEZ J, et al. Safety and feasibility of single-port robotic-assisted nipple-sparing mastectomy[J]. JAMA Surg, 2024, 159(3):269-276. |
| [14] | PARK H S, KIM J H, LEE D W, et al. Gasless robot-assisted nipple-sparing mastectomy: a case report[J]. J Breast Cancer, 2018, 21(3):334-338. |
| [15] | GO J, AHN J H, PARK J M, et al. Analysis of robot-assisted nipple-sparing mastectomy using the da Vinci SP system[J]. J Surg Oncol, 2022, 126(3):417-424. |
| [16] | WATROWSKI R, KOSTOV S, ALKATOUT I. Complications in laparoscopic and robotic-assisted surgery: definitions, classifications, incidence and risk factors-an up-to-date review[J]. Wideochir Inne Tech Maloinwazyjne, 2021, 16(3):501-525. |
| [17] | OROSCO R K, TAM K, NAKAYAMA M, et al. Transoral supraglottic laryngectomy using a next-generation single-port robotic surgical system[J]. Head Neck, 2019, 41(7):2143-2147. |
| [18] | SONG Y, ZENG J, TIAN X, et al. A review of different breast reconstruction methods[J]. Am J Transl Res, 2023, 15(6):3846-3855. |
| [19] | SELBER J C, BAUMANN D P, HOLSINGER F C. Robotic latissimus dorsi muscle harvest: a case series[J]. Plast Reconstr Surg, 2012, 129(6):1305-1312. |
| [20] | LAI H W, CHEN S T, LIN S L, et al. Technique for single axillary incision robotic assisted quadrantectomy and immediate partial breast reconstruction with robotic latissimus dorsi flap harvest for breast cancer: a case report[J]. Medicine (Baltimore), 2018, 97(27):e11373. |
| [21] | FOUARGE A, CUYLITS N. From open to robotic-assisted latissimus dorsi muscle flap harvest[J]. Plast Reconstr Surg Glob Open, 2020, 8(1):e2569. |
| [22] | MANRIQUE O J, BUSTOS S S, MOHAN A T, et al. Robotic-assisted DIEP flap harvest for autologous breast reconstruction: a comparative feasibility study on a cada-veric model[J]. J Reconstr Microsurg, 2020, 36(5):362-368. |
| [23] | GUNDLAPALLI V S, OGUNLEYE A A, SCOTT K, et al. Robotic-assisted deep inferior epigastric artery perforator flap abdominal harvest for breast reconstruction: a case report[J]. Microsurgery, 2018, 38(6):702-705. |
| [24] | CHOI J H, SONG S Y, PARK H S, et al. Robotic DIEP flap harvest through a totally extraperitoneal approach using a single-port surgical robotic system[J]. Plast Reconstr Surg, 2021, 148(2):304-307. |
| [25] | DAYARATNA N, AHMADI N, MAK C, et al. Robotic‐assisted deep inferior epigastric perforator (DIEP) flap harvest for breast reconstruction[J]. ANZ J Surg, 2023, 93(4):1072-1074. |
| [26] | THORNTON R, DAVEY M G, KERIN M J. Evaluating the utility of robotic axillary lymph node dissection in patients with invasive breast cancer: a systematic review[J]. Ir J Med Sci, 2024, 193(3):1163-1170. |
| [27] | LIM S M, KUM C K, LAM F L. Nerve-sparing axillary dissection using the da Vinci surgical system[J]. World J Surg, 2005, 29(10):1352-1355. |
| [28] | LEE J, PARK H S, LEE H, et al. Axillary lymph node dissection using a robotic surgical system: initial experience[J]. J Surg Oncol, 2020, 122(6):1252-1256. |
| [29] | AHN J H, PARK J M, CHOI S B, et al. Early experience of robotic axillary lymph node dissection in patients with node-positive breast cancer[J]. Breast Cancer Res Treat, 2023, 198(3):405-412. |
| [30] | HOUVENAEGHEL G, BANNIER M, RUA S, et al. Breast cancer robotic nipple sparing mastectomy: evaluation of several surgical procedures and learning curve[J]. World J Surg Oncol, 2019, 17(1):27. |
/
| 〈 |
|
〉 |