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SLAM-based dense surface reconstruction in monocular Minimally Invasive Surgery and its application to Augmented Reality.
Comput Methods Programs Biomed. 2018 May;158:135-146. doi: 10.1016/j.cmpb.2018.02.006. Epub 2018 Feb 8.
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本文引用的文献

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Segment anything model for medical image analysis: An experimental study.
Med Image Anal. 2023 Oct;89:102918. doi: 10.1016/j.media.2023.102918. Epub 2023 Aug 2.
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A Concurrent Framework for Constrained Inverse Kinematics of Minimally Invasive Surgical Robots.
Sensors (Basel). 2023 Mar 22;23(6):3328. doi: 10.3390/s23063328.
3
Robotic Endoscope Control Via Autonomous Instrument Tracking.
Front Robot AI. 2022 Apr 11;9:832208. doi: 10.3389/frobt.2022.832208. eCollection 2022.
5
Automating Endoscope Motion in Robotic Surgery: A Usability Study on da Vinci-Assisted Neobladder Reconstruction.
Front Robot AI. 2021 Nov 25;8:707704. doi: 10.3389/frobt.2021.707704. eCollection 2021.
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Gaze gesture based human robot interaction for laparoscopic surgery.
Med Image Anal. 2018 Feb;44:196-214. doi: 10.1016/j.media.2017.11.011. Epub 2017 Nov 28.
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Robotic versus laparoscopic versus open colorectal surgery: towards defining criteria to the right choice.
Surg Endosc. 2018 Jan;32(1):24-38. doi: 10.1007/s00464-017-5796-2. Epub 2017 Aug 15.
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Kinematic design considerations for minimally invasive surgical robots: an overview.
Int J Med Robot. 2012 Jun;8(2):127-45. doi: 10.1002/rcs.453. Epub 2012 Jan 9.
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Eye-hand coordination in laparoscopy - an overview of experiments and supporting aids.
Minim Invasive Ther Allied Technol. 2001 May;10(3):155-62. doi: 10.1080/136457001753192277.
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Controlled trial of the introduction of a robotic camera assistant (EndoAssist) for laparoscopic cholecystectomy.
Surg Endosc. 2002 Sep;16(9):1267-70. doi: 10.1007/s00464-001-9174-7. Epub 2002 Jun 14.

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