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Comprehensive Endovascular and Open Surgical Management of Cerebral Arteriovenous Malformations
Published on: October 20, 2017
Radiosurgical management of pediatric arteriovenous malformations
Douglas Kondziolka1, Hideyuki Kano, Huai-che Yang
1Suite B-400, Department of Neurological Surgery, University of Pittsburgh Medical Center, 200 Lothrop St., Pittsburgh, PA 15213, USA. kondziolkads@upmc.edu
Insights
Stereotactic radiosurgery is an effective treatment for deep-brain arteriovenous malformations (AVMs) in children, offering a biologic approach to managing these vascular malformations and reducing stroke risks.
Area of Science:
- Neurology
- Neurosurgery
- Radiation Oncology
Background:
- Arteriovenous malformations (AVMs) are a leading cause of stroke in children.
- Management strategies for pediatric AVMs include observation, medical management, surgery, embolization, and radiosurgery.
Purpose of the Study:
- To evaluate the role and effectiveness of stereotactic radiosurgery in managing pediatric brain AVMs.
- To explore radiosurgery as a biologic therapy for vascular malformations.
Main Methods:
- Stereotactic radiosurgery is employed for high-risk AVMs in critical brain areas.
- This approach aims to minimize morbidity and mortality associated with hemorrhage and radiation injury.
Main Results:
- Radiosurgery is considered effective for deep-brain AVMs.
- It is also valuable for residual AVMs post-resection and in functional brain locations.
- It may be necessary when embolization is insufficient or microsurgery is not optimal.
Conclusions:
- Stereotactic radiosurgery is the primary biologic therapy for AVMs.
- Future advancements may involve other cellular strategies like brain protection or endothelial sensitization.
Purpose:
Hemorrhage from an arteriovenous malformation (AVM) is the commonest cause of childhood stroke. Management options for children include observation and medical management, surgical resection, endovascular embolization, or stereotactic radiosurgery, alone or in combination.
Methods:
Radiosurgery is used for high-risk malformations in critical brain locations. While this goal is being achieved, there should be limited morbidity and hopefully no mortality from hemorrhage or radiation-induced brain injury.
Results:
Physicians who consider AVM radiosurgery cite one or more of the following: (1) that radiosurgery is an effective therapy required for the management of deep-brain AVMs; (2) that radiosurgery is an effective therapy for residual AVMs after subtotal resection; (3) that radiosurgery is worthwhile in an attempt to lower management risks for AVMs in functional brain locations; (4) since embolization does not cure most AVMs, additional therapy such as radiosurgery may be required; and (5) microsurgical resection may not be the best choice for some children.
Conclusion:
Radiosurgery is the first and only biologic AVM therapy; it represents the beginnings of future cellular approaches to vascular malformation diseases. For this reason, the future of radiosurgery may be impacted positively by the development of other biologic strategies such as brain protection or endothelial sensitization.
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