Literature DB >> 11827880

Prospective evaluation of suspected stenoocclusive disease of the intracranial artery: combined MR angiography and CT angiography compared with digital subtraction angiography.

Toshinori Hirai1, Yukunori Korogi, Ken Ono, Masafumi Nagano, Kousei Maruoka, Shozaburo Uemura, Mutsumasa Takahashi.   

Abstract

BACKGROUND AND
PURPOSE: MR angiography is primarily and increasingly used to assess intracranial arterial stenoocclusion. However, MR angiography can cause overestimation of stenosis. Although CT angiography is accurate, it has limitations. Our purpose was to determine whether the accuracy of combined MR angiography and CT angiography is equal to that of digital subtraction angiography (DSA) in measuring stenosis and detecting major intracranial arterial occlusion.
METHODS: CT angiography and intraarterial DSA were prospectively performed in 18 patients with suspected intracranial stenoocclusive disease, as revealed with MR angiography. Before DSA, two reviewers independently assessed MR intracranial angiograms. Subsequently, they assessed CT angiograms with MR angiograms. Results were compared with DSA results. The degree of stenoocclusion was categorized; stenosis of 50% or more indicated stenoocclusive disease. After the blinded study, two radiologists retrospectively reviewed the angiographic findings.
RESULTS: Stenoocclusive disease was identified in 18 of 198 intracranial arteries at DSA. MR angiography had a sensitivity of 92%, a specificity of 91%, and an accuracy of 91% for the identification of stenosis of 50% or more; the addition of CT angiography yielded values of 100%, 99%, and 99%, respectively. Stenotic grades with combined CT angiography and MR angiography agreed with those of DSA in 98% of cases. In the retrospective study, CT angiography did not always correctly delineate arterial lumina with circumferential calcification and cavernous portions of the internal carotid artery.
CONCLUSION: In this investigation, the evaluation of suspected stenoocclusive diseases in major intracranial arteries, the accuracy of combined MR angiography and CT angiography is equal to that of DSA in most cases.

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Year:  2002        PMID: 11827880      PMCID: PMC7975497     

Source DB:  PubMed          Journal:  AJNR Am J Neuroradiol        ISSN: 0195-6108            Impact factor:   3.825


  22 in total

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2.  Spiral CT angiography and selective digital subtraction angiography of internal carotid artery stenosis.

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3.  Some practical issues of experimental design and data analysis in radiological ROC studies.

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4.  Potential of CT angiography in acute ischemic stroke.

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5.  Cerebral aneurysms: evaluation with three-dimensional CT angiography.

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Journal:  AJNR Am J Neuroradiol       Date:  1996-03       Impact factor: 3.825

6.  High resolution, magnetization transfer saturation, variable flip angle, time-of-flight MRA in the detection of intracranial vascular stenoses.

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7.  Carotid artery stenosis: a prospective comparison of CT angiography and conventional angiography.

Authors:  M J Cumming; I M Morrow
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8.  Intracranial vascular stenosis and occlusion: diagnostic accuracy of three-dimensional, Fourier transform, time-of-flight MR angiography.

Authors:  Y Korogi; M Takahashi; N Mabuchi; H Miki; H Shiga; T Watabe; T O'Uchi; T Nakagawa; Y Horikawa; S Fujiwara
Journal:  Radiology       Date:  1994-10       Impact factor: 11.105

9.  Intracranial vascular stenosis and occlusion: evaluation with three-dimensional time-of-flight MR angiography.

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10.  Race-ethnicity and determinants of intracranial atherosclerotic cerebral infarction. The Northern Manhattan Stroke Study.

Authors:  R L Sacco; D E Kargman; Q Gu; M C Zamanillo
Journal:  Stroke       Date:  1995-01       Impact factor: 7.914

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  39 in total

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Review 2.  MR angiography of the intracranial vessels: technical aspects and clinical applications.

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7.  Pathogenesis of deep white matter medullary infarcts: a diffusion weighted magnetic resonance imaging study.

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Review 8.  Intracranial atherosclerotic disease.

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9.  Feasibility of intravenous flat panel detector CT angiography for intracranial arterial stenosis.

Authors:  J S Jeon; S H Sheen; G J Hwang; H C Kim; B J Kwon
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10.  Optimal MRI sequence for identifying occlusion location in acute stroke: which value of time-resolved contrast-enhanced MRA?

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