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[CRANIO--development of a system for computer- and robot-assisted craniotomy].
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Design of intelligent human-machine collaborative robot-assisted craniotomy system.
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Use of the NeuroMate stereotactic robot in a frameless mode for functional neurosurgery.
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Benchmarking Distance Control and Virtual Drilling for Lateral Skull Base Surgery.
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Computer-aided robotics for applications in fracture reduction surgery: Advances, challenges, and opportunities.
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Design of intelligent human-machine collaborative robot-assisted craniotomy system.
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Three-dimensional printing and 3D slicer powerful tools in understanding and treating neurosurgical diseases.
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Essentials for Standardising the Undergraduate Urology Curriculum in Europe: Outcomes of a Delphi Consensus from the European School of Urology.
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Supervised Autonomous Electrosurgery via Biocompatible Near-Infrared Tissue Tracking Techniques.
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Stereotactic Neuro-Navigation Phantom Designs: A Systematic Review.
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Instrument flight to the inner ear.
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本文引用的文献

1
Least-squares fitting of two 3-d point sets.
IEEE Trans Pattern Anal Mach Intell. 1987 May;9(5):698-700. doi: 10.1109/tpami.1987.4767965.
2
Development of an image-guided robot for small animal research.
Comput Aided Surg. 2007 Nov;12(6):357-65. doi: 10.3109/10929080701732538.
3
Navigated control in functional endoscopic sinus surgery.
Int J Med Robot. 2005 Sep;1(3):31-41. doi: 10.1002/rcs.25.
4
Today's state of the art in surgical robotics*.
Comput Aided Surg. 2005 Mar;10(2):101-32. doi: 10.3109/10929080500228753.
6
History of acoustic neurinoma surgery.
Neurosurg Focus. 2005 Apr 15;18(4):e9. doi: 10.3171/foc.2005.18.4.10.
7
Development of the first force-controlled robot for otoneurosurgery.
Laryngoscope. 2003 Mar;113(3):465-71. doi: 10.1097/00005537-200303000-00014.
9
Neurosurgical outcomes in a modern series of 400 craniotomies for treatment of parenchymal tumors.
Neurosurgery. 1998 May;42(5):1044-55; discussion 1055-6. doi: 10.1097/00006123-199805000-00054.
10
Registration of head volume images using implantable fiducial markers.
IEEE Trans Med Imaging. 1997 Aug;16(4):447-62. doi: 10.1109/42.611354.

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