Detailed imaging of abducens nerve anatomy using contrast-enhanced 3D-TOF MR angiography

Cranial nerves (CNs), particularly CN IV and VI are difficult to visualize with conventional MRI techniques, particularly within the cavernous sinus region. The aim of this study was to evaluate the capacity of high-resolution contrast enhanced 3D time-of-flight (TOF) MR angiography using new genera...

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Veröffentlicht in:Clinical imaging 2021-11, Vol.79, p.330-336
Hauptverfasser: Smith, Garrett, Tuna, Ibrahim Sacit, Massini, Tara C., Tufan, Fatih, Albayram, Mehmet Sait
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Sprache:eng
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Zusammenfassung:Cranial nerves (CNs), particularly CN IV and VI are difficult to visualize with conventional MRI techniques, particularly within the cavernous sinus region. The aim of this study was to evaluate the capacity of high-resolution contrast enhanced 3D time-of-flight (TOF) MR angiography using new generation 3 T imaging technology to provide detailed visualization of CN VI anatomy, particularly within the cavernous sinus and petroclival regions. Two neuroradiologists conducted bilateral evaluation of CN VI visibility in 23 patients for nerve segments located in the petroclival segment (dural cave and Dorello's canal), and three divisions of the cavernous sinus. All images were collected using contrast enhanced TOF MR angiography using a new generation 3 T machine. Of the CN VI segments assessed, average visibility of CN VI was best achieved in Dorello's canal. Overall visibility of CN VI within the regions inspected was best achieved in the axial view, with the exception of the dural cave, which was best assessed using the coronal view. We also identified strong agreement in assessment of nerve visibility between the two reviewers. We also identified a putative CN6 duplication and a small schwannoma, highlighting the fidelity of our approach. Contrast enhanced 3D TOF MR angiography can visualize CN VI anatomy, particularly within the petrocavernosal region and cavernous sinus with simultaneous visualization of arterial and venous structures. This cannot be easily achieved using traditional MRI techniques. This imaging technique might be used with new generation machines to evaluate CN VI anatomy and pathologies within the petrocavernosal region and cavernous sinus, especially relating to vascular pathologies. •We provide imaging of CN VI in the petro-cavernous regions using 3T 3D CE-TOF MRA.•CN VI visualization was similar or superior to that obtained in previous studies.•Our approach typically provided the best CN VI visualization in the axial view.•Strong inter-rater agreement was verified in assessment of nerve visibility.•Our approach may be able to detect CN VI duplication; further verification is needed.
ISSN:0899-7071
1873-4499
DOI:10.1016/j.clinimag.2021.07.026