Using a Microsurgical Robotic Platform for In-flap Anastomosis in Autologous Bipedicular Breast Reconstruction.

Plastic and reconstructive surgery. Global open 2024 Vol.12(1) p. e5511

Vollbach FH, Bigdeli AK, Struebing F, Weigel JL, Gazyakan E, Kneser U

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Abstract

Autologous microsurgical breast reconstruction has become a standard of care. As techniques become more individualized and aim for less-invasive approaches, vessels ever smaller in diameter are considered for flap anastomosis. Robot-assisted surgery has great potential to reduce tremor and enhance precise motion. The Symani Surgical System (Medical Microinstruments, Inc., Wilmington, Del.) is a robotic platform designed for microsurgery. It was used for a microsurgical in-flap anastomosis of a bipedicular deep inferior epigastric artery flap for unilateral breast reconstruction. The procedure included fully robot-assisted anastomoses with significant size mismatches using a 3D-exoscope for magnification. Arterial and venous anastomoses were entirely robot-assisted completed in 23 minutes (seven stitches) and 28 minutes (eight stitches) using 9/0 nylon sutures. The intra- and postoperative course was uneventful. This robotic platform facilitates in-flap anastomoses of small vessels by increasing the precision of instrument handling and eliminating tremor. The combination of robotic platforms and exoscopes provides superior ergonomics in comparison with conventional (super)microsurgery. We expect robotic platforms to play a significant role in modern microsurgical breast reconstruction.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 flap 피판재건술 dict 5
해부 breast 유방 dict 4
기법 robot-assisted 로봇수술 dict 3
시술 microsurgery 미세수술 dict 2
해부 vessels scispacy 1
질환 tremor C0040822
Tremor
scispacy 1
기타 epigastric artery scispacy 1
기타 Arterial scispacy 1
기타 venous anastomoses scispacy 1
기타 vessels scispacy 1

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