Literature DB >> 22343640

Pseudocontinuous arterial spin labeling quantifies relative cerebral blood flow in acute stroke.

Daymara A Hernandez1, Reinoud P H Bokkers, Raymond V Mirasol, Marie Luby, Erica C Henning, José G Merino, Steven Warach, Lawrence L Latour.   

Abstract

BACKGROUND AND
PURPOSE: The aim of this study was to test whether arterial spin labeling (ASL) can detect significant differences in relative cerebral blood flow (rCBF) in the core, mismatch, and reverse-mismatch regions, and whether rCBF values measured by ASL in those areas differ from values obtained using dynamic susceptibility contrast (DSC) MRI.
METHODS: Acute stroke patients were imaged with diffusion-weighted imaging (DWI) and perfusion-weighted imaging (ASL and DSC) MRI. An expert reader segmented the ischemic lesion on DWI and the DSC time-to-peak (TTP) maps. Three regions were defined: core (DWI+, TTP+), mismatch (DWI-, TTP+), and reverse-mismatch (DWI+, TTP-). For both ASL and DSC, rCBF maps were created with commercially available software, and the ratio was calculated as the mean signal intensity measured on the side of the lesion to that of the homologous region in the contralateral hemisphere. Values obtained from core, mismatch, and reverse-mismatch were used for paired comparison.
RESULTS: Twenty-eight patients were included in the study. The mean age was 65.6 (16.9) years, with a median baseline National Institutes of Health Stroke Scale score of 10 (interquartile range, 4-17). Median time from last known normal to MRI was 5.7 hours (interquartile range, 2.9-22.6). Mean rCBF ratios were significantly higher in the mismatch 0.53 (0.23) versus the core 0.39 (0.33) and reverse-mismatch 0.68 (0.49) versus the core 0.38 (0.35). Differences in rCBF measured with DSC and ASL were not significant.
CONCLUSIONS: ASL allows for the measurement of rCBF in the core and mismatch regions. Values in the mismatch were significantly higher than in the core, suggesting there is potential salvageable tissue.

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Year:  2012        PMID: 22343640      PMCID: PMC3299538          DOI: 10.1161/STROKEAHA.111.635979

Source DB:  PubMed          Journal:  Stroke        ISSN: 0039-2499            Impact factor:   7.914


  26 in total

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Authors:  K S St Lawrence; J Wang
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3.  Magnetic resonance imaging of perfusion using spin inversion of arterial water.

Authors:  D S Williams; J A Detre; J S Leigh; A P Koretsky
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4.  Reduced transit-time sensitivity in noninvasive magnetic resonance imaging of human cerebral blood flow.

Authors:  D C Alsop; J A Detre
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5.  High resolution measurement of cerebral blood flow using intravascular tracer bolus passages. Part II: Experimental comparison and preliminary results.

Authors:  L Ostergaard; A G Sorensen; K K Kwong; R M Weisskoff; C Gyldensted; B R Rosen
Journal:  Magn Reson Med       Date:  1996-11       Impact factor: 4.668

6.  Which targets are relevant for therapy of acute ischemic stroke?

Authors:  W D Heiss; A Thiel; M Grond; R Graf
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Authors:  M P Marks; D C Tong; C Beaulieu; G W Albers; A de Crespigny; M E Moseley
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10.  Perfusion imaging.

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  11 in total

1.  Contralateral Hemispheric Cerebral Blood Flow Measured With Arterial Spin Labeling Can Predict Outcome in Acute Stroke.

Authors:  Thoralf Thamm; Jia Guo; Jarrett Rosenberg; Tie Liang; Michael P Marks; Soren Christensen; Huy M Do; Stephanie M Kemp; Emma Adair; Irina Eyngorn; Michael Mlynash; Tudor G Jovin; Bart P Keogh; Hui J Chen; Maarten G Lansberg; Gregory W Albers; Greg Zaharchuk
Journal:  Stroke       Date:  2019-10-17       Impact factor: 7.914

2.  Assessing reperfusion with whole-brain arterial spin labeling: a noninvasive alternative to gadolinium.

Authors:  Raymond V Mirasol; Reinoud P H Bokkers; Daymara A Hernandez; José G Merino; Marie Luby; Steven Warach; Lawrence L Latour
Journal:  Stroke       Date:  2014-01-02       Impact factor: 7.914

Review 3.  PET imaging in ischemic cerebrovascular disease: current status and future directions.

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Journal:  Neurosci Bull       Date:  2014-08-19       Impact factor: 5.203

4.  Clinical utility of arterial spin labeling perfusion images in the emergency department for the work-up of stroke-like symptoms.

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5.  Regional cerebral blood perfusion changes in chronic stroke survivors as potential brain correlates of the functional outcome following gamified home-based rehabilitation (IntelliRehab)-a pilot study.

Authors:  Younis M S Firwana; Mohd Khairul Izamil Zolkefley; Hasnetty Zuria Mohamed Hatta; Christina Rowbin; Che Mohd Nasril Che Mohd Nassir; Muhammad Hafiz Hanafi; Mohd Shafie Abdullah; Bilgin Keserci; Natasha A Lannin; Muzaimi Mustapha
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6.  Validation of cerebral blood flow connectivity as imaging prognostic biomarker on subcortical stroke.

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7.  Simultaneous Hemodynamic and Structural Imaging of Ischemic Stroke With Magnetic Resonance Fingerprinting Arterial Spin Labeling.

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8.  Multi-delay multi-parametric arterial spin-labeled perfusion MRI in acute ischemic stroke - Comparison with dynamic susceptibility contrast enhanced perfusion imaging.

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9.  Comparison of arterial spin labeling and dynamic susceptibility contrast perfusion MRI in patients with acute stroke.

Authors:  Yen-Chu Huang; Ho-Ling Liu; Jiann-Der Lee; Jen-Tsung Yang; Hsu-Huei Weng; Meng Lee; Mei-Yu Yeh; Yuan-Hsiung Tsai
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10.  Quantitative Measurement of Cerebral Perfusion with Intravoxel Incoherent Motion in Acute Ischemia Stroke: Initial Clinical Experience.

Authors:  Li-Bao Hu; Nan Hong; Wen-Zhen Zhu
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