Literature DB >> 17035870

3 T contrast-enhanced magnetic resonance angiography for evaluation of the intracranial arteries: comparison with time-of-flight magnetic resonance angiography and multislice computed tomography angiography.

J Pablo Villablanca1, Kambiz Nael, Reza Habibi, Ali Nael, Gerhard Laub, J Paul Finn.   

Abstract

PURPOSE: We sought to prospectively evaluate the image quality and visualization of the intracranial arteries using high spatial resolution contrast-enhanced magnetic resonance angiography (CE-MRA) at 3 T and to perform intraindividual comparison with time-of-flight (TOF) MRA and multislice CT angiography (CTA).
MATERIALS AND METHODS: Twelve patients (5 men, 7 women, 37-71 years of age) with suspected cerebrovascular disease prospectively underwent MRA and CTA. MRA was performed on a 3 T MR system, including both 3-dimensional (3D) TOF (Voxel dimension: 0.6 x 0.5 x 0.9 mm in 5 minutes and 40 seconds) and 3D CE-MRA (voxel dimension: 0.7 x 0.7 x 0.8 mm in 20 seconds, using parallel acquisition with an acceleration factor of 4). CTA images were acquired on a 16-slice CT scanner (voxel dimension: 0.35 x 0.35 x 0.8 mm in 17 seconds). The image quality and visualization of up to 26 intracranial arterial segments in each study was evaluated by 2 experienced radiologists. The arterial diameter for selective intracranial arteries was measured independently on each of the 3 studies, and statistical analysis and comparative correlation was performed.
RESULTS: A total of 312 arterial segments were examined by CE-MRA, TOF-MRA, and CTA. The majority of intracranial arteries (87%) were visualized with diagnostic image quality on CE-MRA with a significant correlation to TOF (R values = 0.84; 95% confidence interval 0.79-0.86, P < 0.0001), and to CTA (R values = 0.74; 95% confidence interavl 0.68-0.78, P < 0.001). The image quality for small intracranial arteries, including the anterior-inferior cerebellar artery, the posterior communicating artery, and the M3 branch of the middle cerebral artery, was significantly lower on CE-MRA compared with TOF and CTA (P < 0.03). There was a significant correlation for the dimensional measurements of arterial diameters at CE-MRA with TOF (r = 0.88, 95% confidence interval 0.81-0.93), and CTA (r = 0.83, 95% confidence interval 0.73-0.90).
CONCLUSION: The described 3 T CE-MRA protocol, spanning from the cervical to the intracranial vessels, visualized and characterized the majority of intracranial arteries with image quality comparable with that obtained using TOF-MRA and CTA. Further clinical studies are required to establish the accuracy of the technique in a broader clinical setting.

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Year:  2006        PMID: 17035870     DOI: 10.1097/01.rli.0000242835.00032.f5

Source DB:  PubMed          Journal:  Invest Radiol        ISSN: 0020-9996            Impact factor:   6.016


  10 in total

1.  ACCF/ACR/AHA/NASCI/SCMR 2010 expert consensus document on cardiovascular magnetic resonance: a report of the American College of Cardiology Foundation Task Force on Expert Consensus Documents.

Authors:  W Gregory Hundley; David A Bluemke; J Paul Finn; Scott D Flamm; Mark A Fogel; Matthias G Friedrich; Vincent B Ho; Michael Jerosch-Herold; Christopher M Kramer; Warren J Manning; Manesh Patel; Gerald M Pohost; Arthur E Stillman; Richard D White; Pamela K Woodard
Journal:  Circulation       Date:  2010-05-17       Impact factor: 29.690

Review 2.  ACCF/ACR/AHA/NASCI/SCMR 2010 expert consensus document on cardiovascular magnetic resonance: a report of the American College of Cardiology Foundation Task Force on Expert Consensus Documents.

Authors:  W Gregory Hundley; David A Bluemke; J Paul Finn; Scott D Flamm; Mark A Fogel; Matthias G Friedrich; Vincent B Ho; Michael Jerosch-Herold; Christopher M Kramer; Warren J Manning; Manesh Patel; Gerald M Pohost; Arthur E Stillman; Richard D White; Pamela K Woodard
Journal:  J Am Coll Cardiol       Date:  2010-06-08       Impact factor: 24.094

3.  Evaluation of the supraaortic arteries using non-contrast-enhanced Velocity MR angiography "Inhance".

Authors:  Nina Lummel; Tobias Boeckh-Behrens; Juergen Lutz; Michael Burke; Jennifer Linn
Journal:  Neuroradiology       Date:  2012-05-09       Impact factor: 2.804

4.  Posttraumatic subgaleal herniation of an intracranial cerebral arterial segment.

Authors:  Manav Bhalla; John L Ulmer; Andrew P Klein; Kieran E McAvoy; Namrata M Bhalla
Journal:  Proc (Bayl Univ Med Cent)       Date:  2019-03-26

5.  Detection of carotid artery stenosis: a comparison between 2 unenhanced MRAs and dual-source CTA.

Authors:  P Lv; J Lin; D Guo; H Liu; X Tang; C Fu; J Hu
Journal:  AJNR Am J Neuroradiol       Date:  2014-08-07       Impact factor: 3.825

6.  Evaluation of fast highly undersampled contrast-enhanced MR angiography (sparse CE-MRA) in intracranial applications - initial study.

Authors:  Marcel Gratz; Marc Schlamann; Sophia Goericke; Stefan Maderwald; Harald H Quick
Journal:  Eur Radiol       Date:  2016-06-14       Impact factor: 5.315

7.  The Posterior Cerebral Artery and its Main Cortical Branches Identified with Noninvasive Transcranial Color-Coded Duplex Sonography.

Authors:  P E Frid; S J Schreiber; O Pade; F Doepp; J Valdueza
Journal:  Ultrasound Int Open       Date:  2015-11-06

8.  The Role of 3 Tesla MRA in the Detection of Intracranial Aneurysms.

Authors:  Eftychia Z Kapsalaki; Christos D Rountas; Kostas N Fountas
Journal:  Int J Vasc Med       Date:  2012-01-16

9.  Comparative evaluation of 64-slice CT angiography and digital subtraction angiography in assessing the cervicocranial vasculature.

Authors:  Randolf Klingebiel; Max Kentenich; Hans-Christian Bauknecht; Florian Masuhr; Eberhard Siebert; Markus Busch; Georg Bohner
Journal:  Vasc Health Risk Manag       Date:  2008

10.  Eight-Year Follow-Up of Neuropsychiatric Symptoms and Brain Structural Changes in Fabry Disease.

Authors:  Irene M Lelieveld; Anna Böttcher; Julia B Hennermann; Michael Beck; Andreas Fellgiebel
Journal:  PLoS One       Date:  2015-09-04       Impact factor: 3.240

  10 in total

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