Highly precise navigation at the lateral skull base by the combination of flat-panel volume CT and electromagnetic navigation

Author:

Taeger Johannes1ORCID,Müller-Graff Franz-Tassilo1ORCID,Neun Tilmann2,Köping Maria1,Schendzielorz Philipp1,Hagen Rudolf1,Rak Kristen1

Affiliation:

1. Department of Otorhinolaryngology, Plastic, Aesthetic and Reconstructive Head and Neck Surgery, University Hospital Würzburg, Würzburg, Bavaria, Germany

2. Institute for Diagnostical and Interventional Neuroradiology, University Hospital Würzburg, Würzburg, Bavaria, Germany

Abstract

This study aimed to evaluate the feasibility and accuracy of electromagnetic navigation at the lateral skull base in combination with flat panel volume computed tomography (fpVCT) datasets. A mastoidectomy and a posterior tympanotomy were performed on 10 samples of fresh frozen temporal bones. For registration, four self-drilling titanium screws were applied as fiducial markers. Multi-slice computed tomography (MSCT; 600 µm), conventional flat panel volume computed tomography (fpVCT; 466 µm), micro-fpVCT (197 µm) and secondary reconstructed fpVCT (100 µM) scans were performed and data were loaded into the navigation system. The resulting fiducial registration error (FRE) was analysed, and control of the navigation accuracy was performed. The registration process was very quick and reliable with the screws as fiducials. Compared to using the MSCT data, the micro-fpVCT data led to significantly lower FRE values, whereas conventional fpVCT and secondary reconstructed fpVCT data had no advantage in terms of accuracy. For all imaging modalities, there was no relevant visual deviation when targeting defined anatomical points with a navigation probe. fpVCT data are very well suited for electromagnetic navigation at the lateral skull base. The use of titanium screws as fiducial markers turned out to be ideal for comparing different imaging methods. A further evaluation of this approach by a clinical trial is required.

Funder

julius-maximilians-universität würzburg

Publisher

SAGE Publications

Subject

Multidisciplinary

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