Literature DB >> 23127061

Dosimetric measurements of Onyx embolization material for stereotactic radiosurgery.

Donald A Roberts1, James M Balter, Neeraj Chaudhary, Joseph J Gemmete, Aditya S Pandey.   

Abstract

PURPOSE: Arteriovenous malformations are often treated with a combination of embolization and stereotactic radiosurgery. Concern has been expressed in the past regarding the dosimetric properties of materials used in embolization and the effects that the introduction of these materials into the brain may have on the quality of the radiosurgery plan. To quantify these effects, the authors have taken large volumes of Onyx 34 and Onyx 18 (ethylene-vinyl alcohol copolymer doped with tantalum) and measured the attenuation and interface effects of these embolization materials.
METHODS: The manufacturer provided large cured volumes (∼28 cc) of both Onyx materials. These samples were 8.5 cm in diameter with a nominal thickness of 5 mm. The samples were placed on a block tray above a stack of solid water with an Attix chamber at a depth of 5 cm within the stack. The Attix chamber was used to measure the attenuation. These measurements were made for both 6 and 16 MV beams. Placing the sample directly on the solid water stack and varying the thickness of solid water between the sample and the Attix chamber measured the interface effects. The computed tomography (CT) numbers for bulk material were measured in a phantom using a wide bore CT scanner.
RESULTS: The transmission through the Onyx materials relative to solid water was approximately 98% and 97% for 16 and 6 MV beams, respectively. The interface effect shows an enhancement of approximately 2% and 1% downstream for 16 and 6 MV beams. CT numbers of approximately 2600-3000 were measured for both materials, which corresponded to an apparent relative electron density (RED) ρ(e) (w) to water of approximately 2.7-2.9 if calculated from the commissioning data of the CT scanner.
CONCLUSIONS: We performed direct measurements of attenuation and interface effects of Onyx 34 and Onyx 18 embolization materials with large samples. The introduction of embolization materials affects the dose distribution of a MV therapeutic beam, but should be of negligible consequence for effective thicknesses of less than 8 mm. The measured interface effects are also small, particularly at 6 MV. Large areas of high-density artifacts and low-density artifacts can cause errors in dose calculations and need to be identified and resolved during planning.

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Mesh:

Year:  2012        PMID: 23127061     DOI: 10.1118/1.4757918

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  8 in total

1.  Imaging artifacts of Onyx and PHIL on conventional CT, cone-beam CT and MRI in an animal model.

Authors:  Dominik F Vollherbst; Ruth Otto; Thuy Do; Hans U Kauczor; Martin Bendszus; Christof M Sommer; Markus A Möhlenbruch
Journal:  Interv Neuroradiol       Date:  2018-07-04       Impact factor: 1.610

2.  Dosimetric effects of embolization material artefacts in arteriovenous malformations stereotactic radiosurgery on treatment planning calculation.

Authors:  Abousaleh Elawadi; Mukhtar Alshanqity; Hussain AlHussain; Reham Mohamed; Yasser Orz; Sultan Alqahtani; Sayel Melheim
Journal:  Phys Imaging Radiat Oncol       Date:  2022-07-02

3.  Imaging Artifacts of Liquid Embolic Agents on Conventional CT in an Experimental in Vitro Model.

Authors:  N Schmitt; R O Floca; D Paech; R A El Shafie; F Seker; M Bendszus; M A Möhlenbruch; D F Vollherbst
Journal:  AJNR Am J Neuroradiol       Date:  2020-11-19       Impact factor: 3.825

4.  Stereotactic radiosurgery with versus without prior Onyx embolization for brain arteriovenous malformations.

Authors:  Ching-Jen Chen; Dale Ding; Cheng-Chia Lee; Kathryn N Kearns; I Jonathan Pomeraniec; Christopher P Cifarelli; David E Arsanious; Roman Liscak; Jaromir Hanuska; Brian J Williams; Mehran B Yusuf; Shiao Y Woo; Natasha Ironside; Rebecca M Burke; Ronald E Warnick; Daniel M Trifiletti; David Mathieu; Monica Mureb; Carolina Benjamin; Douglas Kondziolka; Caleb E Feliciano; Rafael Rodriguez-Mercado; Kevin M Cockroft; Scott Simon; Heath B Mackley; Samer G Zammar; Neel T Patel; Varun Padmanaban; Nathan Beatson; Anissa Saylany; John Y K Lee; Jason P Sheehan
Journal:  J Neurosurg       Date:  2020-12-11       Impact factor: 5.408

5.  The impact of software-based metal artifact reduction on the liquid embolic agent Onyx in cone-beam CT: a systematic in vitro and in vivo study.

Authors:  Niclas Schmitt; Charlotte S Weyland; Lena Wucherpfennig; Christof M Sommer; Martin Bendszus; Markus A Möhlenbruch; Dominik F Vollherbst
Journal:  J Neurointerv Surg       Date:  2021-08-25       Impact factor: 8.572

6.  Iterative Metal Artifact Reduction (iMAR) of the Non-adhesive Liquid Embolic Agent Onyx in Computed Tomography : An Experimental Study.

Authors:  Niclas Schmitt; Charlotte S Weyland; Lena Wucherpfennig; Christian Herweh; Martin Bendszus; Markus A Möhlenbruch; Dominik F Vollherbst
Journal:  Clin Neuroradiol       Date:  2021-10-13       Impact factor: 3.156

7.  Imaging Artifacts of Nonadhesive Liquid Embolic Agents in Conventional and Cone-beam CT in a Novel in Vitro AVM Model.

Authors:  Niclas Schmitt; Ralf O Floca; Daniel Paech; Rami A El Shafie; Ulf Neuberger; Martin Bendszus; Markus A Möhlenbruch; Dominik F Vollherbst
Journal:  Clin Neuroradiol       Date:  2021-04-14       Impact factor: 3.649

Review 8.  Glue, Onyx, Squid or PHIL? Liquid Embolic Agents for the Embolization of Cerebral Arteriovenous Malformations and Dural Arteriovenous Fistulas.

Authors:  Dominik F Vollherbst; René Chapot; Martin Bendszus; Markus A Möhlenbruch
Journal:  Clin Neuroradiol       Date:  2021-07-29       Impact factor: 3.649

  8 in total

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