Revascularization of the upper posterior circulation with the anterior temporal artery: an anatomical feasibility

Ali Tayebi Meybodi1,2, Michael T Lawton1,2, Dylan Griswold1,2

  • 11Department of Neurological Surgery.

Journal of Neurosurgery
|September 23, 2017
PubMed

Insights

The anterior temporal artery (ATA) is a viable intracranial donor for upper posterior circulation (UPC) revascularization, offering a direct bypass to the superior cerebellar artery (SCA) and posterior cerebral artery (PCA). This study demonstrated its anatomical feasibility in cadaveric specimens.

Area of Science:

  • Neurosurgery
  • Vascular Surgery
  • Anatomy

Background:

  • Revascularization of the upper posterior circulation (UPC), including the superior cerebellar artery (SCA) and posterior cerebral artery (PCA), is crucial for managing conditions like unclippable aneurysms.
  • Intracranial (IC) donors for UPC bypass have not been extensively studied.

Purpose of the Study:

  • To assess the anatomical feasibility of using the anterior temporal artery (ATA) as an intracranial donor for UPC revascularization.
  • To evaluate the potential for ATA bypass to the SCA and PCA.

Main Methods:

  • Anterior temporal artery (ATA) to superior cerebellar artery (SCA) and posterior cerebral artery (PCA) bypasses were performed on 14 cadaver specimens.
  • An orbitozygomatic craniotomy and basal cistern opening were utilized.
  • End-to-side anastomosis was performed after mobilizing the ATA.

Main Results:

  • Successful anastomosis was achieved in 14 out of 17 (82%) anterior temporal arteries (ATAs).
  • Anastomosis to the posterior cerebral artery (PCA) averaged 14.2 mm from its origin; to the superior cerebellar artery (SCA), it averaged 10.1 mm.
  • Three ATAs were unsuitable due to a common origin with the middle temporal artery.

Conclusions:

  • The anterior temporal artery (ATA) is a promising intracranial donor for upper posterior circulation (UPC) revascularization.
  • The pterional-orbitozygomatic approach facilitates exposure of the ATA to the SCA and PCA.
  • End-to-side anastomosis using the ATA offers an efficient bypass without requiring grafts or complex anastomoses.