切换至 "中华医学电子期刊资源库"

中华乳腺病杂志(电子版) ›› 2020, Vol. 14 ›› Issue (03) : 131 -133. doi: 10.3877/cma.j.issn.1674-0807.2020.03.001

所属专题: 机器人手术 文献

专家论坛

达芬奇机器人在乳房重建中的应用及未来发展新趋势
陈莉1   
  1. 1. 400038 重庆,陆军军医大学第一附属医院乳腺甲状腺外科
  • 收稿日期:2020-02-24 出版日期:2020-06-01
  • 基金资助:
    重庆市技术创新与应用发展专项面上项目资助(cstc2019jscx-msxmX0191)

Application of Da Vinci robot in breast reconstruction and its new trend

Li Chen1   

  1. 1. Department of Breast and Thyroid Surgery, First Affiliated Hospital of Army Medical University, Chongqing 400038, China
  • Received:2020-02-24 Published:2020-06-01
引用本文:

陈莉. 达芬奇机器人在乳房重建中的应用及未来发展新趋势[J]. 中华乳腺病杂志(电子版), 2020, 14(03): 131-133.

Li Chen. Application of Da Vinci robot in breast reconstruction and its new trend[J]. Chinese Journal of Breast Disease(Electronic Edition), 2020, 14(03): 131-133.

达芬奇机器人辅助的乳房重建技术是乳腺外科技术微创化的重要分支。虽然机器人价格昂贵、普及率低、学习曲线长,但其智能化及远程操控能力具有独特优势。机器人辅助微创乳房重建是未来发展新方向。笔者将重点介绍机器人在乳房重建中的应用及注意事项,为同行们提供临床实践的参考。

Da Vinci robot assisted breast reconstruction is an important branch of minimally invasive breast surgery. Robotic surgery has unique advantages of intelligence and remote-control capability, despite expensive cost, low popularity and long learning curve. Robot assisted minimally invasive breast reconstruction is a new trend in the future. In this paper, the application as well as key points of robot assisted breast reconstruction is introduced, which may provide a reference for clinical practice.

[1]
Bouquet de Joliniere J, Librino A, Dubuisson JB, et al. Robotic surgery in gynecology[J]. Front Surg, 2016, 3: 26.
[2]
Maeso S, Reza M, Mayol JA,et al.Efficacy of the Da Vinci surgical system in abdominal surgery compared with that of laparoscopy: a systematic review and meta-analysis[J]. Ann Surg, 2010, 252(2): 254-262.
[3]
Tukenmez M, Ozden BC, Agcaoglu O, et al. Videoendoscopic single-port nipple-sparing mastectomy and immediate reconstruction[J]. J Laparoendosc Adv Surg Tech A, 2014, 24(2): 77-82.
[4]
Ingram D. Is it time for breast cancer surgeons to embrace endoscopic-assisted mastectomy[J]. ANZ J Surg, 2008, 78(10): 837-838.
[5]
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.
[6]
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): e28-30.
[7]
Toesca A, Peradze N, Manconi A, et al. Robotic nipple-sparing mastectomy for the treatment of breast cancer: feasibility and safety study[J]. Breast, 2017, 31: 51-56.
[8]
Ahn SJ, Song SY, Park HS. Early experiences with robot-assisted prosthetic breast reconstruction[J]. Arch Plast Surg, 2019, 46(1): 79-83.
[9]
Schneider WJ, Hill HL Jr, Brown RG. Latissimus dorsi myocutaneous flap for breast reconstruction[J]. Br J Plast Surg, 1977, 30(4): 277-281.
[10]
Adams WP Jr, Lipschitz AH, Ansari M, et al. Functional donor site morbidity following latissimus dorsi muscle flap transfer[J]. Ann Plast Surg, 2004, 53(1): 6-11.
[11]
Chung JH, You HJ, Kim HS, et al. A novel technique for robot assisted latissimus dorsi flap harvest[J]. J Plast Reconstr Aesthet Surg, 2015, 68(7): 966-972.
[12]
Selber JC, Baumann DP, Holsinger FC, et al. Robotic latissimus dorsi muscle harvest: a case series [J]. Plast Reconstr Surg, 2012, 129(6): 1305-1312.
[13]
Houvenaeghel G, Bannier M, Rua S, et al. Robotic breast and reconstructive surgery: 100 procedures in 2-years for 80 patients[J]. Surg Oncol, 2019, 31: 38-45.
[14]
Xu S, Tang P, Chen X, et al. Novel technique for laparoscopic harvesting of latissimus dorsi flap with prosthesis implantation for breast reconstruction: A preliminary study with 2 case reports[J]. Medicine (Baltimore), 2016, 95(46): e5428.
[15]
Gundlapalli VS, Ogunleye AA, 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.
[16]
Zhang D, Chen J, Li W, et al. A microsurgical robot research platform for robot-assisted microsurgery research and training[J]. Int J Comput Assist Radiol Surg, 2020,15(1): 15-25.
[17]
Upton J, Mulliken JB, Hicks PD, et al. Restoration of facial contour using free vascularized omental transfer[J]. Plast Reconstr Surg, 1980,66(4): 560-569.
[18]
Guan D, Lin H, Lv Z, et al. The oncoplastic breast surgery with pedicled omental flap harvested by laparoscopy: initial experiences from China[J]. World J Surg Oncol, 2015,13: 95.
[19]
van Alphen TC, Fechner MR, Smit JM, et al. The laparoscopically harvested omentum as a free flap for autologous breast reconstruction[J]. Microsurgery,2017,37(6): 539-545.
[20]
Özkan Ö, Özkan Ö, Çinpolat A, et al. Robotic harvesting of the omental flap: a case report and mini-review of the use of robots in reconstructive surgery[J]. J Robot Surg,2019,13(4): 539-543.
[21]
骆成玉. 乳腔镜在乳腺外科手术中的应用现状[J/CD]. 中华乳腺病杂志(电子版),2008, 2(6): 620-625.
[22]
van Mulken TJM, Schols RM, Scharmga AMJ, et al. First-in-human robotic supermicrosurgery using a dedicated microsurgical robot for treating breast cancer-related lymphedema: a randomized pilot trial[J]. Nat Commun, 2020, 11(1): 757.
[23]
陈莉,徐舒曼.微创乳房重建历史及发展新趋势[J/CD].中华乳腺病杂志(电子版), 2016, 10(3): 129-132.
[1] 郏亚平, 曾书娥. 含鳞状细胞癌成分的乳腺化生性癌的超声与病理特征分析[J]. 中华医学超声杂志(电子版), 2023, 20(08): 844-848.
[2] 唐玮, 何融泉, 黄素宁. 深度学习在乳腺癌影像诊疗和预后预测中的应用[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 323-328.
[3] 康夏, 田浩, 钱进, 高源, 缪洪明, 齐晓伟. 骨织素抑制破骨细胞分化改善肿瘤骨转移中骨溶解的机制研究[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 329-339.
[4] 衣晓丽, 胡沙沙, 张彦. HER-2低表达对乳腺癌新辅助治疗疗效及预后的影响[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 340-346.
[5] 施杰, 李云涛, 高海燕. 腋窝淋巴结阳性Luminal A型乳腺癌患者新辅助与辅助化疗的预后及影响因素分析[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 353-361.
[6] 伍秋苑, 陈佩贤, 邓裕华, 何添成, 周丹. 肠道微生物在乳腺癌中的研究进展[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 362-365.
[7] 谭巧, 苏小涵, 侯令密, 黎君彦, 邓世山. 乳腺髓样癌的诊治进展[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 366-368.
[8] 周婉丽, 钱铮, 李喆. 槐耳在乳腺癌免疫治疗中的研究进展[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 369-371.
[9] 熊倩, 罗凤. 乳腺癌患者术后康复现状与对策的研究进展[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 372-374.
[10] 杨小菁, 姜瑞瑞, 石玉香, 王静静, 李长天. 乳腺孤立性纤维性肿瘤一例[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 375-377.
[11] 冯雪园, 韩萌萌, 马宁. 乳腺原发上皮样血管内皮瘤一例[J]. 中华乳腺病杂志(电子版), 2023, 17(06): 378-380.
[12] 伊喆, 王志新, 陈伟, 齐伟亚, 方杰, 石海飞, 赵夏, 赵喆, 竺枫, 盛伟, 陈焱, 张宇昊, 朱瑾, 殷耀斌, 杨勇, 陈山林, 刘波. 机器人辅助无移位急性舟骨骨折经皮内固定的诊疗与手术操作规范[J]. 中华损伤与修复杂志(电子版), 2023, 18(06): 464-468.
[13] 罗佳, 赵晶晶, 曹小珍, 钟玲, 范林军, 曾令娟. 单侧腋窝双侧乳晕入路机器人甲状腺术后局部加压预防皮下隧道出血的对照研究[J]. 中华普外科手术学杂志(电子版), 2023, 17(06): 603-606.
[14] 晏晴艳, 雍晓梅, 罗洪, 杜敏. 成都地区老年转移性乳腺癌的预后及生存因素研究[J]. 中华普外科手术学杂志(电子版), 2023, 17(06): 636-638.
[15] 刘成, 赖聪, 黄健, 王建辰, 罗茜芸, 许可慰. EDGE SP1000单孔手术机器人辅助腹腔镜下猪输尿管部分切除联合端端吻合术的可行性研究[J]. 中华腔镜泌尿外科杂志(电子版), 2023, 17(06): 642-646.
阅读次数
全文


摘要