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首例人类机器人超微创手术:使用专用微创手术机器人治疗乳腺癌相关淋巴水肿:一项随机试点试验。

First-in-human robotic supermicrosurgery using a dedicated microsurgical robot for treating breast cancer-related lymphedema: a randomized pilot trial.

机构信息

Department of Plastic, Reconstructive and Hand Surgery, Maastricht University Medical Center, Maastricht, The Netherlands.

Department of Methodology and Statistics, Care and Public Health Research Institute (CAPHRI), Maastricht University, Maastricht, The Netherlands.

出版信息

Nat Commun. 2020 Feb 11;11(1):757. doi: 10.1038/s41467-019-14188-w.

Abstract

Advancements in reconstructive microsurgery have evolved into supermicrosurgery; connecting vessels with diameter between 0.3 and 0.8 mm for reconstruction of lymphatic flow and vascularized tissue transplantation. Supermicrosurgery is limited by the precision and dexterity of the surgeon's hands. Robot assistance can help overcome these human limitations, thereby enabling a breakthrough in supermicrosurgery. We report the first-in-human study of robot-assisted supermicrosurgery using a dedicated microsurgical robotic platform. A prospective randomized pilot study is conducted comparing robot-assisted and manual supermicrosurgical lymphatico-venous anastomosis (LVA) in treating breast cancer-related lymphedema. We evaluate patient outcome at 1 and 3 months post surgery, duration of the surgery, and quality of the anastomosis. At 3 months, patient outcome improves. Furthermore, a steep decline in duration of time required to complete the anastomosis is observed in the robot-assisted group (33-16 min). Here, we report the feasibility of robot-assisted supermicrosurgical anastomosis in LVA, indicating promising results for the future of reconstructive supermicrosurgery.

摘要

重建显微外科的进步已经发展到超显微外科;连接直径在 0.3 至 0.8 毫米之间的血管,用于重建淋巴液流动和血管化组织移植。超显微外科受到外科医生手部精度和灵活性的限制。机器人辅助可以帮助克服这些人类的局限性,从而实现超显微外科的突破。我们报告了首例使用专用显微手术机器人平台进行的机器人辅助超显微外科手术的人体研究。一项前瞻性随机试验研究比较了机器人辅助和手动超显微外科淋巴静脉吻合术(LVA)治疗乳腺癌相关淋巴水肿的效果。我们评估了术后 1 个月和 3 个月的患者结果、手术持续时间和吻合口质量。3 个月后,患者的结果得到改善。此外,在机器人辅助组中,完成吻合所需的时间明显缩短(33-16 分钟)。在这里,我们报告了机器人辅助超显微外科吻合术在 LVA 中的可行性,为重建超显微外科的未来提供了有希望的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1187/7012819/561e3f683a4b/41467_2019_14188_Fig1_HTML.jpg

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