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The Final Cut: Evolution of Cavernous Sinus Decompression Beyond the Dolenc Cut

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BACKGROUND: Meningiomas involving the cavernous sinus (CS) represent a formidable challenge to neurosurgeons. Because of high morbidity, aggressive tumor resection within the CS has been largely replaced by extracavernous tumor… Click to show full abstract

BACKGROUND: Meningiomas involving the cavernous sinus (CS) represent a formidable challenge to neurosurgeons. Because of high morbidity, aggressive tumor resection within the CS has been largely replaced by extracavernous tumor resection and decompression of the CS. The widely used Dolenc method involves blind dural transection over the oculomotor nerve, potentially placing the crossing trochlear nerve at risk. OBJECTIVE: To provide a safer way for the decompression of the CS and at the same time, circumferential resection of the temporal lobe dura. METHODS: Cadaveric dissection of 8 cadaveric heads (16 sides) was performed. Frontotemporal craniotomy with zygomatic osteotomy was performed. Extradural and intradural dissection of the lateral wall of the CS and free edge of tentorium was performed. Photographic documentation, artistic illustrations, and illustrative video cases are provided. RESULTS: Three tether points were released: anterior—the meningo-orbital band, lateral—dura over the V2 and V3, and medial—superficial layer of the free edge of tentorium. Transection of the superficial layer of the free edge of the tentorium along its edge, in conjunction with a lateral cut over the temporal convexity, constitutes the final cut, allowing a resection of the lateral CS wall and the circumferential resection of temporal lobe dura. CONCLUSION: Using the “final cut” technique allows for a circumferential resection of the temporal lobe dura and lateral CS wall while avoiding blind cuts that could put cranial nerves at risk. All dural transections are performed in anatomically separated layers under constant visualization.

Keywords: cut; final cut; cavernous sinus; resection; decompression; dura

Journal Title: Operative Neurosurgery
Year Published: 2022

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