Robotic Transnasal Endoscopic Skull Base Surgery: Systematic Review of the Literature and Report of a Novel Prototype for a Hybrid System (Brescia Endoscope Assistant Robotic Holder)

Andrea Bolzoni Villaret, Francesco Doglietto, Andrea Carobbio, Alberto Schreiber, Camilla Panni, Enrico Piantoni, Giovanni Guida, Marco Maria Fontanella, Piero Nicolai, Riccardo Cassinis

Risultato della ricerca: Contributo in rivistaArticolo in rivista

Abstract

Background Although robotics has already been applied to several surgical fields, available systems are not designed for endoscopic skull base surgery (ESBS). New conception prototypes have been recently described for ESBS. The aim of this study was to provide a systematic literature review of robotics for ESBS and describe a novel prototype developed at the University of Brescia. Methods PubMed and Scopus databases were searched using a combination of terms, including Robotics OR Robot and Surgery OR Otolaryngology OR Skull Base OR Holder. The retrieved papers were analyzed, recording the following features: interface, tools under robotic control, force feedback, safety systems, setup time, and operative time. A novel hybrid robotic system has been developed and tested in a preclinical setting at the University of Brescia, using an industrial manipulator and readily available off-the-shelf components. Results A total of 11 robotic prototypes for ESBS were identified. Almost all prototypes present a difficult emergency management as one of the main limits. The Brescia Endoscope Assistant Robotic holder has proven the feasibility of an intuitive robotic movement, using the surgeon's head position: a 6 degree of freedom sensor was used and 2 light sources were added to glasses that were therefore recognized by a commercially available sensor. Conclusions Robotic system prototypes designed for ESBS and reported in the literature still present significant technical limitations. Hybrid robot assistance has a huge potential and might soon be feasible in ESBS.
Lingua originaleEnglish
pagine (da-a)875-883
Numero di pagine9
RivistaWorld Neurosurgery
Volume105
DOI
Stato di pubblicazionePubblicato - 2017

Keywords

  • Endoscopic skull base surgery
  • Robotics
  • Review
  • Prototype

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