Literature DB >> 18952832

3D MPRAGE improves classification of cortical lesions in multiple sclerosis.

F Nelson1, A Poonawalla, P Hou, J S Wolinsky, P A Narayana.   

Abstract

BACKGROUND: Gray matter lesions are known to be common in multiple sclerosis (MS) and are suspected to play an important role in disease progression and clinical disability. A combination of magnetic resonance imaging (MRI) techniques, double-inversion recovery (DIR), and phase-sensitive inversion recovery (PSIR), has been used for detection and classification of cortical lesions. This study shows that high-resolution three-dimensional (3D) magnetization-prepared rapid acquisition with gradient echo (MPRAGE) improves the classification of cortical lesions by allowing more accurate anatomic localization of lesion morphology.
METHODS: 11 patients with MS with previously identified cortical lesions were scanned using DIR, PSIR, and 3D MPRAGE. Lesions were identified on DIR and PSIR and classified as purely intracortical or mixed. MPRAGE images were then examined, and lesions were re-classified based on the new information.
RESULTS: The high signal-to-noise ratio, fine anatomic detail, and clear gray-white matter tissue contrast seen in the MPRAGE images provided superior delineation of lesion borders and surrounding gray-white matter junction, improving classification accuracy. 119 lesions were identified as either intracortical or mixed on DIR/PSIR. In 89 cases, MPRAGE confirmed the classification by DIR/PSIR. In 30 cases, MPRAGE overturned the original classification.
CONCLUSION: Improved classification of cortical lesions was realized by inclusion of high-spatial resolution 3D MPRAGE. This sequence provides unique detail on lesion morphology that is necessary for accurate classification.

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Year:  2008        PMID: 18952832      PMCID: PMC2650249          DOI: 10.1177/1352458508094644

Source DB:  PubMed          Journal:  Mult Scler        ISSN: 1352-4585            Impact factor:   6.312


  23 in total

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2.  Improved identification of intracortical lesions in multiple sclerosis with phase-sensitive inversion recovery in combination with fast double inversion recovery MR imaging.

Authors:  F Nelson; A H Poonawalla; P Hou; F Huang; J S Wolinsky; P A Narayana
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6.  Memory dysfunction in multiple sclerosis corresponds to juxtacortical lesion load on fast fluid-attenuated inversion-recovery MR images.

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  39 in total

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Journal:  Neurotherapeutics       Date:  2017-10       Impact factor: 7.620

2.  T1 and proton density at 7 T in patients with multiple sclerosis: an initial study.

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Review 4.  MR imaging of gray matter involvement in multiple sclerosis: implications for understanding disease pathophysiology and monitoring treatment efficacy.

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Review 6.  Grey matter damage in multiple sclerosis: a pathology perspective.

Authors:  Roel Klaver; Helga E De Vries; Geert J Schenk; Jeroen J G Geurts
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Review 7.  Grey matter lesions in MS: from histology to clinical implications.

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8.  Optimizing 3D FLAIR to detect MS lesions: pushing past factory settings for precise results.

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9.  Manual Segmentation of MS Cortical Lesions Using MRI: A Comparison of 3 MRI Reading Protocols.

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10.  Examination of the role of magnetic resonance imaging in multiple sclerosis: A problem-orientated approach.

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Journal:  Ann Indian Acad Neurol       Date:  2009-10       Impact factor: 1.383

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