In vitro assessment of image-guided otologic surgery: Submillimeter accuracy within the region of the temporal bone

Author:

Labadie Robert F.1,Shah Rohan J.2,Harris Steve S.2,Cetinkaya Ebru3,Haynes David S.1,Fenlon Michael R.4,Juszczyk Andrzej S.4,Galloway Robert L.2,Fitzpatrick J. Michael3

Affiliation:

1. From the Departments of Otolaryngology-Head and Neck Surgery, Vanderbilt University, Nashville, TN

2. Biomedical Engineering, Vanderbilt University, Nashville, TN

3. Electrical Engineering and Computer Science, Computer Engineering, Vanderbilt University, Nashville, TN

4. Department of Prosthodontics, King's College, London, London SE1 9RT, United Kingdom

Abstract

OBJECTIVES: Application of image-guided surgery to otology has been limited by the need for sub-millimeter accuracy via a fiducial system that is easily usable (noninvasive and nonobstructive). METHODS: A dental bite-block was fitted with a rigid frame with 7 fiducial markers surrounding each external ear. The temporal bones of 3 cadaveric skulls were removed and replaced with surgical targets arranged in a bull's-eye pattern about the centroid of each temporal bone. The surgical targets were identified both within CT scans and in physical space using an infrared optical tracking system. The difference between positions in CT space versus physical space was calculated as target registration error. RESULTS: A total of 234 independent target registration errors were calculated. Mean ± standard deviation = 0.73 mm ± 0.25 mm. CONCLUSIONS: These findings show that image-guided otologic surgery with submillimeter accuracy is achievable with a minimally invasive fiducial frame. SIGNIFICANCE: In vivo validation of the system is ongoing. With such validation, this system may facilitate clinically applicable image-guided otologic surgery. EBM rating: A.

Publisher

SAGE Publications

Subject

Otorhinolaryngology,Surgery

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