Clin Exp Otorhinolaryngol.  2019 May;12(2):231-232. 10.21053/ceo.2018.01627.

Understanding the Biomechanical Properties of Skull Base Tissues Is Essential for the Future of Virtual Reality Endoscopic Sinus and Skull Base Surgery Simulators

Affiliations
  • 1Department of Otolaryngology-Head and Neck Surgery, Gui de Chauliac Hospital, University Hospital of Montpellier, Montpellier, France. valentin_favier@hotmail.com
  • 2Aide à la Décision Médicale Personnalisée, Montpellier University, Montpellier, France.
  • 3Department of Otolaryngology-Head and Neck Surgery, Brabois Hospital, University Regional Hospital of Nancy, Lorraine University, VandÅ“uvre-lès-Nancy, France.
  • 4Montpellier Laboratory of Informatics, Robotics and Microelectonics (LIRMM), ICAR Team, French National Centre for Scientific Research (CNRS), Montpellier University, Montpellier, France.

Abstract

No abstract available.


MeSH Terms

Skull Base*
Skull*

Reference

1. Kim DH, Kim Y, Park JS, Kim SW. Virtual reality simulators for endoscopic sinus and skull base surgery: the present and future. Clin Exp Otorhinolaryngol. 2019; Feb. 12(1):12–7.
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2. Westebring-van der Putten EP, Goossens RH, Jakimowicz JJ, Dankelman J. Haptics in minimally invasive surgery: a review. Minim Invasive Ther Allied Technol. 2008; 17(1):3–16.
3. Favier V, Zemiti N, Caravaca Mora O, Subsol G, Captier G, Lebrun R, et al. Geometric and mechanical evaluation of 3D-printing materials for skull base anatomical education and endoscopic surgery simulation: a first step to create reliable customized simulators. PLoS One. 2017; Dec. 12(12):e0189486.
4. Tholey G, Desai JP, Castellanos AE. Force feedback plays a significant role in minimally invasive surgery: results and analysis. Ann Surg. 2005; Jan. 241(1):102–9.
5. Waridel F, Monnier P, Agrifoglio A. Evaluation of the bone resistance of the sphenoid and ethmoid sinuses. Laryngoscope. 1997; Dec. 107(12 Pt 1):1667–70.
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