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Updated: Jun 8, 2026

Comprehensive Endovascular and Open Surgical Management of Cerebral Arteriovenous Malformations
Published on: October 20, 2017
Gamma knife radiosurgery for dural arteriovenous fistulas
Christopher P Cifarelli1, George Kaptain, Chun-Po Yen
1Department of Neurological Surgery, University of Virginia, Charlottesville, Virginia, USA.
Background:
The current management of intracranial dural arteriovenous fistulas (dAVFs) incorporates a multimodal approach involving microneurosurgery, endovascular embolization, and radiosurgery.
Objective:
To explore the role of Gamma Knife radiosurgery for dAVFs.
Methods:
The series includes patients with dAVFs who had Gamma Knife radiosurgery at the University of Virginia Medical Center between 1989 and 2005 with clinical follow-up through 2008. Medical records were reviewed to obtain clinical history, demographic data, and dosimetry. Radiographic records provided the location and anatomy of the dAVFs. Follow-up angiography was performed 2 to 3 years after treatment, with cure defined as complete obliteration of fistulous flow. Follow-up for clinical symptomology and quality of life was obtained from direct patient and primary physician questionnaires.
Results:
Fifty-five patients underwent Gamma Knife radiosurgery for dAVFs during the study period. Twenty patients (36%) presented with intracranial hemorrhage before radiosurgery. Gamma Knife radiosurgery was preceded by craniotomy for microneurosurgical ablation in 11 patients (20%) or endovascular embolization in 36 patients (65%). Follow-up angiography was performed on 46 patients (83%) with documented obliteration in 30 patients (65%). Patients lost to follow-up were classified as treatment failures, adjusting the range of efficacy from 65% to 54%. Three patients (5%) suffered a posttreatment hemorrhage during the follow-up period, but no new permanent neurological deficits resulted from these events.
Conclusion:
Gamma Knife radiosurgery is an effective adjunct therapy for dAVFs with persistence of flow after open neurosurgical resection or endovascular treatment while still maintaining a role in nonaggressive dAVFs not amenable to either surgery or embolization.
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