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Acta Neurochirurgica· 2026Q2

Microscopic fenestration of a posterior fossa arachnoid cyst with cranial nerve compression by fully anatomical suboccipital mini-craniotomy: How I do it

Simone Grannò, Diana Ghenciof, Karl Schaller, Andréa Bartoli

Short summary

A midline suboccipital mini-craniotomy technique allows safe and effective microsurgical fenestration of posterior fossa arachnoid cysts causing lower cranial nerve compression.

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Key points

  • A midline suboccipital mini-craniotomy is described for microsurgical fenestration of posterior fossa arachnoid cysts.
  • The technique emphasizes direct visual identification of neurovascular structures and wide cisternal communication.
  • The approach was performed without neuronavigation or intraoperative neuromonitoring.
  • Microsurgical fenestration using anatomical landmarks provides durable, low-morbidity symptom relief for lower cranial nerve compression.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Background Posterior fossa arachnoid cysts may cause cranial nerve dysfunction as well as brainstem or vascular compression due to mass effect in a narrow compartment. Optimal surgical management remains debated, particularly regarding the indications to surgery versus conservative management, fenestration or shunting. Methods We describe a fully anatomical microsurgical fenestration of a posterior fossa arachnoid cyst causing lower cranial nerve compression, performed through a midline suboccipital mini-craniotomy. The technique emphasizes direct visual identification of neurovascular structures and wide cisternal communication. Conclusions An anatomical suboccipital approach, performed without neuronavigation or intraoperative neuromonitoring, allows safe and effective decompression of posterior fossa arachnoid cysts with lower cranial nerve involvement. Microsurgical fenestration with meticulous dissection guided by direct anatomical landmarks provides durable, low-morbidity symptom relief.

The authors' abstract, as published at the source. Acta Neurochirurgica, 2026 · DOI ↗

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Field: Cellular and Molecular Neuroscience

Cellular and Molecular NeuroscienceNeuroscience