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Research ArticleINTERVENTIONAL

Diagnostic Accuracy of 3D Time-of-Flight MR Angiography Compared with Digital Subtraction Angiography for Follow-Up of Coiled Intracranial Aneurysms: Influence of Aneurysm Size

H.A. Deutschmann, M. Augustin, J. Simbrunner, B. Unger, H. Schoellnast, G.A. Fritz and G.E. Klein
American Journal of Neuroradiology April 2007, 28 (4) 628-634;
H.A. Deutschmann
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M. Augustin
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J. Simbrunner
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B. Unger
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H. Schoellnast
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G.A. Fritz
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G.E. Klein
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Abstract

BACKGROUND AND PURPOSE: 3D time-of-flight MR angiography (3D TOF MRA) may be used as noninvasive alternative to digital subtraction angiography (DSA) for the follow-up of patients with intracranial aneurysms treated with Guglielmi detachable coils (GDCs). We aimed to determine the influence of aneurysm size and location on diagnostic accuracy of 3D TOF MRA for follow-up of intracranial aneurysms treated with GDCs.

MATERIALS AND METHODS: Two hundred and one 3D TOF MRAs in 127 consecutive patients with 136 aneurysms were compared with DSA as standard of reference. Sensitivity and specificity of 3D TOF MRA for detection of residual or reperfusion of the aneurysms was calculated with regard to aneurysm size and location.

RESULTS: Overall sensitivity and specificity of MRA was 88.5% and 92.9%, respectively. Sensitivity was lower for aneurysms ≤5 mm (72.2%) and ≤3 mm (63.6%). In addition to the small aneurysm size, interpretation of MR angiograms was compromised by susceptibility artifacts at the air-bone interface, arterial overlap, and pulsation-induced artifacts. The small number of disagreements between MRA and DSA hampered reliable interpretation of the possible influence of aneurysm location on MRA accuracy.

CONCLUSION: The sensitivity of 3D TOF MRA for detection of reperfusion or residual perfusion of coiled intracranial aneurysms varies considerably depending on the size of the aneurysms. No conclusions can be drawn regarding a possible influence of aneurysm location on diagnostic accuracy of 3D TOF MRA. These findings may influence the decision about whether to replace DSA by 3D TOF MRA for the follow-up of patients with intracranial aneurysms treated with GDCs.

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American Journal of Neuroradiology: 28 (4)
American Journal of Neuroradiology
Vol. 28, Issue 4
April 2007
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H.A. Deutschmann, M. Augustin, J. Simbrunner, B. Unger, H. Schoellnast, G.A. Fritz, G.E. Klein
Diagnostic Accuracy of 3D Time-of-Flight MR Angiography Compared with Digital Subtraction Angiography for Follow-Up of Coiled Intracranial Aneurysms: Influence of Aneurysm Size
American Journal of Neuroradiology Apr 2007, 28 (4) 628-634;

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Diagnostic Accuracy of 3D Time-of-Flight MR Angiography Compared with Digital Subtraction Angiography for Follow-Up of Coiled Intracranial Aneurysms: Influence of Aneurysm Size
H.A. Deutschmann, M. Augustin, J. Simbrunner, B. Unger, H. Schoellnast, G.A. Fritz, G.E. Klein
American Journal of Neuroradiology Apr 2007, 28 (4) 628-634;
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  • Differential Subsampling with Cartesian Ordering-MRA for Classifying Residual Treated Aneurysms
  • MRA versus DSA for the follow-up imaging of intracranial aneurysms treated using endovascular techniques: a meta-analysis
  • Voxel based analysis of recurrence dynamics in intracranial aneurysms after coiling
  • MRA Versus DSA for Follow-Up of Coiled Intracranial Aneurysms: A Meta-Analysis
  • 3D Computerized Occlusion Rating of Embolized Experimental Aneurysms Using Noninvasive 1.5T MR Imaging
  • Residual Flow After Cerebral Aneurysm Coil Occlusion: Diagnostic Accuracy of MR Angiography
  • A Prospective Trial of 3T and 1.5T Time-of-Flight and Contrast-Enhanced MR Angiography in the Follow-Up of Coiled Intracranial Aneurysms
  • MR Angiographic Follow-Up of Intracranial Aneurysms Treated with Detachable Coils: Evaluation of a Blood-Pool Contrast Medium
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