Cardiovasc Intervent Radiol https://doi.org/10.1007/s00270-018-1986-0 LABORATORY INVESTIGATION Inherently Radiopaque Narrow-Size-Calibrated Microspheres: Proof of Principle in a Pig Embolization Model 1,2 3 1 4 3 • • • • • Christof M. Sommer A. Harms T. D. Do T. L. Gockner M. Kriegsmann 1 3 1,5 3 6 • • • • • C. L. Schlett K. Holzer D. Vollherbst A. Warth P. L. Pereira 7 7 1 1,8 • • • V. Eichwald M. Jugold H. U. Kauczor P. Flechsig Received: 8 October 2017 / Accepted: 11 May 2018 Springer Science+Business Media, LLC, part of Springer Nature and the Cardiovascular and Interventional Radiological Society of Europe (CIRSE) 2018 Abstract artery embolization was performed in 12 pigs, and Purpose To investigate radiopacity, size and size calibra- radiopacity was examined by in vitro micro-computed tion, morphology, and vascular distribution of inherently tomography (CT), in vivo cone-beam CT, and ex vivo radiopaque microspheres in vitro and in a pig embolization micro-CT after killing. Morphology and vascular distri- model. bution of microspheres were microscopically examined. Materials and Methods We compared three types of Results In in vitro and ex vivo micro-CT, radiopacity of TM TM microspheres: DCBead (size 100–300 lm) and Embo- Visible was
CardioVascular and Interventional Radiology – Springer Journals
Published: Jun 1, 2018
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