Related Experiment Video
Updated: Jul 10, 2026

Lateral Molar Approach-Driven Transoral Endoscopic Procedure for Benign Infratemporal Fossa Tumor Resection
Published on: August 15, 2025
An Anatomic Study of the Endoscopic Orbitozygomatic Approach for Extradural Access to the Orbit, Cavernous Sinus, and
Mustafa Eren Yuncu1,2, Berra Bilgin1,2, Tufan Agah Kartum2,3
1Department of Neurosurgery, Izmir City Hospital, Izmir, Turkey.
Background And Objectives:
Access to the orbit, cavernous sinus, Meckel cave (MC), and infratemporal fossa (ITF) remains challenging due to the complex 3-dimensional anatomy and proximity to critical neurovascular structures. An extradural endoscopic orbitozygomatic (OZ) approach has the potential to provide a direct surgical corridor across these compartments while minimizing the limitations of compartment-specific corridors.
Methods:
Five formalin-fixed, silicone-injected cadaveric heads (10 sides) were dissected using an extradural OZ approach under operative microscopy supplemented with 0° and 30° rigid endoscopes. After a two-piece OZ craniotomy, extradural dissection was performed toward the superior orbital fissure and foramen rotundum/ovale, combined with anterior petrosectomy and opening of MC. Anatomic exposure, corridor continuity, and visualization of key neurovascular structures were qualitatively assessed.
Results:
The extradural endoscopic OZ approach created a direct working corridor from the lateral orbit to the ITF and petroclival region. Endoscopic augmentation enhanced visualization of the lateral cavernous sinus wall, trigeminal divisions (V1-V3), cavernous internal carotid artery, medial orbital apex, deep infratemporal recesses, and the petroclival region. Anterior petrosectomy extended exposure toward the upper clivus and ventrolateral brainstem. Limitations included restricted microscopic visualization of the medial orbit and inferior ITF, which were partially mitigated by angled endoscopy.
Conclusion:
This cadaveric study demonstrates that the extradural OZ-anterior petrosectomy approach establishes a continuous anatomic corridor integrating the orbit, cavernous sinus/MC, ITF, and petroclival region, while defining its boundaries, areas of optimal exposure, and inherent limitations. As a qualitative study, the findings are descriptive in nature and do not include quantitative morphometric analysis.
