Literature DB >> 33596630

Low-Dose 3D Rotational Angiography in Measuring the Size of Intracranial Aneurysm: In Vitro Feasibility Study Using Aneurysm Phantom.

Hee Jong Ki1, Bum-Soo Kim2, Jun-Ki Kim1, Jai Ho Choi1, Yong Sam Shin1, Yangsean Choi2, Na-Young Shin2, Jinhee Jang2, Kook-Jin Ahn2.   

Abstract

PURPOSE: Three-dimensional (3D) measurement of intracranial aneurysms is important in planning endovascular treatment, and 3D rotational angiography (RA) is effective in accurate measurement. The purpose of this study was to evaluate the feasibility of low dose 3D RA (5 seconds 0.10 μGy/frame) in measuring an intracranial aneurysm using an in vitro phantom.
MATERIALS AND METHODS: We investigated an <I>in vitro 3D phantom of an intracranial aneurysm with 10 acquisitions of 3D RA with a conventional dose (5 seconds 0.36 μGy/frame) and 10 acquisitions with a low-dose (5 seconds 0.10 μGy/frame). 3D size and neck diameters of the aneurysm were measured and compared between the 2 groups (conventional and low-dose) using noninferiority statistics.
RESULTS: The aneurysm measurements were well-correlated between the 2 readers, and noninferiority in the measurement of aneurysmal size of low-dose 3D RA was demonstrated, as the upper margin of the 1-sided 97.5% confidence interval did not cross the pre-defined noninferiority margin of 0.2 mm by the 2 readers.
CONCLUSION: Low-dose (5 seconds 0.10 μGy/frame) cerebral 3D RA is technically feasible and not inferior in in vitro 3D measurement of an intracranial aneurysm. Thus, low-dose 3D RA is promising and needs further evaluation for its clinical utility in the planning of endovascular treatment of an intracranial aneurysm.

Entities:  

Keywords:  Cerebral angiography; Intracranial aneurysm; Radiation dosage

Year:  2021        PMID: 33596630     DOI: 10.5469/neuroint.2020.00437

Source DB:  PubMed          Journal:  Neurointervention        ISSN: 2093-9043


  1 in total

1.  Low-Dose Three-Dimensional Rotational Angiography for Evaluating Intracranial Aneurysms: Analysis of Image Quality and Radiation Dose.

Authors:  Hee Jong Ki; Bum-Soo Kim; Jun-Ki Kim; Jai Ho Choi; Yong Sam Shin; Yangsean Choi; Na-Young Shin; Jinhee Jang; Kook-Jin Ahn
Journal:  Korean J Radiol       Date:  2022-01-04       Impact factor: 3.500

  1 in total

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