"Microcisternal Drainage" Technique for Clipping a Middle Cerebral Artery Aneurysm.

World Neurosurg

Stroke Center, Department of Neurosurgery, Sapporo Teishinkai Hospital, Sapporo, Hokkaido, Japan. Electronic address:

Published: April 2023

AI Article Synopsis

  • - Arachnoid dissection is tough due to tight spaces, delicate blood vessels, and a limited view, making it a skillful procedure for neurosurgeons, especially when "splitting" the sylvian fissure.
  • - The authors introduced a new technique called "microcisternal drainage," which involves carefully suctioning cerebrospinal fluid while gently retracting the area to improve visibility and access to microvessels.
  • - This technique enhances the safety and efficiency of the dissection process, minimizing risks while allowing for successful treatment of conditions like a middle cerebral artery bifurcation aneurysm, as demonstrated by a successful case with good patient outcomes.

Article Abstract

Arachnoid dissection is often challenging because of tight corridors, microvasculature crossing the membranes, and a narrow operative field. It is often said that "splitting" the sylvian fissure measures the talent of a cerebrovascular neurosurgeon, and there are as many styles of sylvian fissure dissection as neurosurgical schools. Our principle is to dissect the subarachnoid space sharply and with minimal trauma to neither the microvasculature nor the pia matter. We have developed a technique that allows efficient and safe sharp dissection through the subarachnoid space: the "microcisternal drainage" technique. This technique (Video 1) consists of applying a pledget to a narrow cistern and suctioning the cerebrospinal fluid while maintaining uplifting retraction with the suction shaft. Clear trabeculae are dissected sharply to release microvessels at the convexity of their turns. This technique is especially advantageous when cisterns are narrow (e.g., pia-to-pia) or highly eloquent structures are at risk. The main advantages over conventional cisternal dissection are avoidance of refractive effect, enhanced identification of the microvasculature from the trabeculae, and preservation of pia matter. Using the microcisternal drainage technique, the microvasculature, arachnoid membranes, and pia reveal themselves, and we avoid the cerebrospinal fluid-related refractive effect, therefore maximizing depth perception. We report an example of the "microcisternal drainage" technique to split the sylvian fissure during treatment of an irregular middle cerebral artery bifurcation aneurysm on a 56-year-old woman. The patient tolerated the procedure well, was discharged without neurologic deficits, and resumed normal life with no aneurysm remnant. The patient consented to the procedure and video and photography publication.

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http://dx.doi.org/10.1016/j.wneu.2023.01.074DOI Listing

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The Microcisternal Drainage Technique.

World Neurosurg

August 2023

Stroke Center, Department of Neurosurgery, Sapporo Teishinkai Hospital, Sapporo, Hokkaido, Japan. Electronic address:

Background: Microsurgical dissection of arachnoid cisterns requires a combination of anatomic knowledge and microsurgical skill. The latter relies on experience and microsurgical dexterity, which depend on visual identification of cisternal microvasculature. We describe a novel standardized operative sequence to allow for bloodless arachnoid dissection when cisternal anatomy is challenging.

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"Microcisternal Drainage" Technique for Clipping a Middle Cerebral Artery Aneurysm.

World Neurosurg

April 2023

Stroke Center, Department of Neurosurgery, Sapporo Teishinkai Hospital, Sapporo, Hokkaido, Japan. Electronic address:

Article Synopsis
  • - Arachnoid dissection is tough due to tight spaces, delicate blood vessels, and a limited view, making it a skillful procedure for neurosurgeons, especially when "splitting" the sylvian fissure.
  • - The authors introduced a new technique called "microcisternal drainage," which involves carefully suctioning cerebrospinal fluid while gently retracting the area to improve visibility and access to microvessels.
  • - This technique enhances the safety and efficiency of the dissection process, minimizing risks while allowing for successful treatment of conditions like a middle cerebral artery bifurcation aneurysm, as demonstrated by a successful case with good patient outcomes.
View Article and Find Full Text PDF

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