Literature DB >> 18803337

An integrated system for planning, navigation and robotic assistance for skull base surgery.

Tian Xia1, Clint Baird, George Jallo, Kathryn Hayes, Nobuyuki Nakajima, Nobuhiko Hata, Peter Kazanzides.   

Abstract

BACKGROUND: We developed an image-guided robot system to provide mechanical assistance for skull base drilling, which is performed to gain access for some neurosurgical interventions, such as tumour resection. The motivation for introducing this robot was to improve safety by preventing the surgeon from accidentally damaging critical neurovascular structures during the drilling procedure.
METHODS: We integrated a Stealthstation navigation system, a NeuroMate robotic arm with a six-degree-of-freedom force sensor, and the 3D Slicer visualization software to allow the robotic arm to be used in a navigated, cooperatively-controlled fashion by the surgeon. We employed virtual fixtures to constrain the motion of the robot-held cutting tool, so that it remained in the safe zone that was defined on a preoperative CT scan.
RESULTS: We performed experiments on both foam skull and cadaver heads. The results for foam blocks cut using different registrations yielded an average placement error of 0.6 mm and an average dimensional error of 0.6 mm. We drilled the posterior porus acusticus in three cadaver heads and concluded that the robot-assisted procedure is clinically feasible and provides some ergonomic benefits, such as stabilizing the drill. We obtained postoperative CT scans of the cadaver heads to assess the accuracy and found that some bone outside the virtual fixture boundary was cut. The typical overcut was 1-2 mm, with a maximum overcut of about 3 mm.
CONCLUSIONS: The image-guided cooperatively-controlled robot system can improve the safety and ergonomics of skull base drilling by stabilizing the drill and enforcing virtual fixtures to protect critical neurovascular structures. The next step is to improve the accuracy so that the overcut can be reduced to a more clinically acceptable value of about 1 mm.

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Year:  2008        PMID: 18803337      PMCID: PMC2770335          DOI: 10.1002/rcs.213

Source DB:  PubMed          Journal:  Int J Med Robot        ISSN: 1478-5951            Impact factor:   2.547


  10 in total

1.  Development of the first force-controlled robot for otoneurosurgery.

Authors:  Philipp A Federspil; Urban W Geisthoff; Dominik Henrich; Peter K Plinkert
Journal:  Laryngoscope       Date:  2003-03       Impact factor: 3.325

2.  The application accuracy of the NeuroMate robot--A quantitative comparison with frameless and frame-based surgical localization systems.

Authors:  Qing Hang Li; Lucía Zamorano; Abhilash Pandya; Ramiro Perez; Jianxing Gong; Fernando Diaz
Journal:  Comput Aided Surg       Date:  2002

Review 3.  Today's state of the art in surgical robotics*.

Authors:  Peter P Pott; Hanns-Peter Scharf; Markus L R Schwarz
Journal:  Comput Aided Surg       Date:  2005-03

4.  An automated robotic approach with redundant navigation for minimal invasive extended transsphenoidal skull base surgery.

Authors:  K Bumm; J Wurm; J Rachinger; T Dannenmann; C Bohr; R Fahlbusch; H Iro; C Nimsky
Journal:  Minim Invasive Neurosurg       Date:  2005-06

5.  Development of an image-guided robot for small animal research.

Authors:  Peter Kazanzides; Jenghwa Chang; Iulian Iordachita; Jack Li; C Clifton Ling; Gabor Fichtinger
Journal:  Comput Aided Surg       Date:  2007-11

Review 6.  Neurosurgical outcomes in a modern series of 400 craniotomies for treatment of parenchymal tumors.

Authors:  R Sawaya; M Hammoud; D Schoppa; K R Hess; S Z Wu; W M Shi; D M Wildrick
Journal:  Neurosurgery       Date:  1998-05       Impact factor: 4.654

7.  Least-squares fitting of two 3-d point sets.

Authors:  K S Arun; T S Huang; S D Blostein
Journal:  IEEE Trans Pattern Anal Mach Intell       Date:  1987-05       Impact factor: 6.226

8.  Registration of head volume images using implantable fiducial markers.

Authors:  C R Maurer; J M Fitzpatrick; M Y Wang; R L Galloway; R J Maciunas; G S Allen
Journal:  IEEE Trans Med Imaging       Date:  1997-08       Impact factor: 10.048

Review 9.  History of acoustic neurinoma surgery.

Authors:  Theofilos G Machinis; Kostas N Fountas; Vassilios Dimopoulos; Joe Sam Robinson
Journal:  Neurosurg Focus       Date:  2005-04-15       Impact factor: 4.047

10.  Navigated control in functional endoscopic sinus surgery.

Authors:  G Strauss; K Koulechov; R Richter; A Dietz; C Trantakis; T Lüth
Journal:  Int J Med Robot       Date:  2005-09       Impact factor: 2.547

  10 in total
  33 in total

1.  Morphometric measurements of the anterior skull base for endoscopic transoral and transnasal approaches.

Authors:  Bradley C Lega; Daniel R Kramer; Jason G Newman; John Y K Lee
Journal:  Skull Base       Date:  2011-01

2.  Determination of the curling behavior of a preformed cochlear implant electrode array.

Authors:  Thomas S Rau; Omid Majdani; Andreas Hussong; Thomas Lenarz; Martin Leinung
Journal:  Int J Comput Assist Radiol Surg       Date:  2010-07-28       Impact factor: 2.924

3.  A Compact, Bone-Attached Robot for Mastoidectomy.

Authors:  Neal P Dillon; Ramya Balachandran; J Michael Fitzpatrick; Michael A Siebold; Robert F Labadie; George B Wanna; Thomas J Withrow; Robert J Webster
Journal:  J Med Device       Date:  2015-09       Impact factor: 0.582

Review 4.  Comprehensive review on endonasal endoscopic sinus surgery.

Authors:  Rainer K Weber; Werner Hosemann
Journal:  GMS Curr Top Otorhinolaryngol Head Neck Surg       Date:  2015-12-22

5.  Supervised Autonomous Electrosurgery via Biocompatible Near-Infrared Tissue Tracking Techniques.

Authors:  H Saeidi; J Ge; M Kam; J D Opfermann; S Leonard; A S Joshi; A Krieger
Journal:  IEEE Trans Med Robot Bionics       Date:  2019-10-28

6.  A single-port operator-controlled flexible endoscope system for endoscopic skull base surgery.

Authors:  P J Schuler; M Scheithauer; N Rotter; J Veit; U Duvvuri; T K Hoffmann
Journal:  HNO       Date:  2015-03       Impact factor: 1.284

7.  Innovative endoscopic sino-nasal and anterior skull base robotics.

Authors:  Vincent Trévillot; Rafael Sobral; Etienne Dombre; Philippe Poignet; Benoît Herman; Louis Crampette
Journal:  Int J Comput Assist Radiol Surg       Date:  2013-04-09       Impact factor: 2.924

8.  Cadaveric Testing of Robot-Assisted Access to the Internal Auditory Canal for Vestibular Schwannoma Removal.

Authors:  Neal P Dillon; Ramya Balachandran; Michael A Siebold; Robert J Webster; George B Wanna; Robert F Labadie
Journal:  Otol Neurotol       Date:  2017-03       Impact factor: 2.311

9.  Robotic hypospadias surgery: a new evolution.

Authors:  Pasquale Casale; Thomas S Lendvay
Journal:  J Robot Surg       Date:  2009-11-26

10.  OpenIGTLink: an open network protocol for image-guided therapy environment.

Authors:  Junichi Tokuda; Gregory S Fischer; Xenophon Papademetris; Ziv Yaniv; Luis Ibanez; Patrick Cheng; Haiying Liu; Jack Blevins; Jumpei Arata; Alexandra J Golby; Tina Kapur; Steve Pieper; Everette C Burdette; Gabor Fichtinger; Clare M Tempany; Nobuhiko Hata
Journal:  Int J Med Robot       Date:  2009-12       Impact factor: 2.547

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