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A Novel High-resolution In vivo Imaging Technique to Study the Dynamic Response of Intracranial Structures to Tumor Growth and Therapeutics
Published on: June 16, 2013
Optimizing 3D Cerebral Angiographic Imaging Techniques for Gamma Knife Radiosurgery: Technical Considerations for
Ryuichi Noda1,2, Mariko Kawashima3, Yuki Kamiya4
1From the Department of Neurosurgery (R.N., T.I.), NTT Medical Center Tokyo, Tokyo, Japan rnrn46_8447@yahoo.co.jp.
Abstract:
3D cerebral angiographic imaging offers superior spatial resolution and flexible acquisition compared with CTA, enabling selective injections and dynamic phase selection.1-4 Its application in gamma knife radiosurgery has been increasingly recognized, particularly for arteriovenous shunts, where precise visualization of angioarchitecture is essential.5-12 We describe strategies for incorporating 3D rotational angiography and conebeam CT into treatment planning, highlighting their respective strengths and limitations.7,8,12-16 Imaging can be performed either before or after frame fixation, each approach carrying unique advantages and constraints.19,20 Postprocessing-targeted reconstruction, MIP/MPR, subtraction imaging, and metal-artifact reduction-further refines visualization, highlighting the complementary value of each technique.17,18 These tools enhance confidence in nidus delineation and planning accuracy. Collaboration with endovascular specialists is critical for optimal acquisition and data sharing. This video presents technical considerations and practical tips to optimize the clinical use of 3D angiographic imaging in gamma knife radiosurgery for arteriovenous shunt management.
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