Three-Dimensional In Vivo Modeling of Vestibular Schwannomas and Surrounding Cranial Nerves With Diffusion Imaging Tractography

Author:

Chen David Qixiang1,Quan Jessica2,Guha Abhijit13,Tymianski Michael13,Mikulis David23,Hodaie Mojgan13

Affiliation:

1. Division of Neurosurgery and Toronto Western Hospital and University of Toronto, Toronto, Ontario, Canada

2. Division of Faculty of Medicine, Queen's University, Kingston, Ontario, Canada

3. Division of Institute of Medical Science, University of Toronto, Toronto, Ontario, Canada

Abstract

AbstractBACKGROUND:Preservation of cranial nerves (CNs) is of paramount concern in the treatment of vestibular schwannomas, particularly in large tumors with thinned and distorted CN fibers. However, imaging of the CN fibers surrounding vestibular schwannomas has been limited with 2-dimensional imaging alone.OBJECTIVE:To assess whether tractography of the CN combined with anatomic magnetic resonance imaging of the tumor can provide superior 3-dimensional (3D) visualization of tumor/CN complexes.METHODS:Magnetic resonance imaging at 3 T, including diffusion tensor imaging and anatomic images, were analyzed in 3 subjects with vestibular schwannomas using 3D Slicer software. The diffusion tensor images were used to track the courses of trigeminal, abducens, facial, and vestibulocochlear nerves. The anatomic images were used to model the 3D volume reconstruction of the tumor. The 2 sets of images were then superimposed through the use of linear registration.RESULTS:Combined 3D tumor modeling and CN tractography can effectively and consistently reconstruct the 3D spatial relationship of CN/tumor complexes and allows superior visualization compared with 2-dimensional imaging. Lateral and superior distortion of the trigeminal nerve was observed in all cases. The position of the facial nerve was primarily anteriorly and inferiorly. The gasserian ganglion and early postganglionic branches could also be visualized.CONCLUSION:Tractography and anatomic imaging were successfully combined to demonstrate the precise location of surrounding CN fibers. This technique can be useful in both neuronavigation and radiosurgical planning. Because knowledge of the course of these fibers is of important clinical interest, implementation of this technique may help decrease injury to CNs during treatment of these lesions.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Clinical Neurology,Surgery

Reference21 articles.

1. Detection of acoustic schwannoma: use of constructive interference in the steady state three-dimensional MR;Stuckey;AJNR Am J Neuroradiol,1996

2. MR cisternography of the cerebellopontine angle: comparison of three-dimensional fast asymmetrical spin-echo and three-dimensional constructive interference in the steady-state sequences;Naganawa;AJNR Am J Neuroradiol,2001

3. What is the best tumor size to achieve optimal functional results in vestibular schwannoma surgery?;Gjuric;Skull Base,2008

4. Microsurgical anatomy of acoustic neuroma;Rhoton;Otolaryngol Clin North Am,1992

5. The cerebellopontine angle and posterior fossa cranial nerves by the retrosigmoid approach;Rhoton;Neurosurgery,2000

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