Literature DB >> 10745130

Quantitative multi-modal functional MRI with blood oxygenation level dependent exponential decays adjusted for flow attenuated inversion recovery (BOLDED AFFAIR).

F Hyder1, R Renken, R P Kennan, D L Rothman.   

Abstract

A magnetic resonance imaging (MRI) method is described that allows interleaved measurements of transverse (R(2)(*) and R(2)) and longitudinal (R(1)) relaxation rates of tissue water in conjunction with spin labeling. The image-contrasts are intrinsically blood oxygenation level dependent (BOLD) and cerebral blood flow (CBF) weighted, but each contrast is made quantitative by two echo time (TE) and inversion recovery time (TIR) acquisitions with gradient echo (GE) and spin echo (SE) weighted echo-planar imaging (EPI). The EPI data were acquired at 7 Tesla with nominal spatial resolution of 430 x 430 x 1000 microm(3) in rat brain in vivo. The method is termed as blood oxygenation level dependent exponential decays adjusted for flow attenuated inversion recovery (BOLDED AFFAIR) and allows acquisition of R(2)(*), R(2), and CBF maps in an interleaved manner within approximately 12 minute. The basic theory of the method, associated experimental/systematic errors, and temporal restrictions are discussed. The method is validated by comparison of multi-modal maps obtained by BOLDED AFFAIR (i.e., two TE and TIR values with GE and SE sequences) and conventional approach (i.e., multiple TE and TIR values with GE and SE sequences) during varied levels of whole brain activity. Preliminary functional data from a rat forepaw stimulation model demonstrate the feasibility of this method for functional MRI (fMRI) studies. It is expected that with appropriate precautions this method in conjunction with contrast agent-based MRI has great potential for quantitative fMRI studies of mammalian cortex.

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Year:  2000        PMID: 10745130     DOI: 10.1016/s0730-725x(00)00125-9

Source DB:  PubMed          Journal:  Magn Reson Imaging        ISSN: 0730-725X            Impact factor:   2.546


  9 in total

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2.  Total neuroenergetics support localized brain activity: implications for the interpretation of fMRI.

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Review 3.  Combining brain imaging with microarray: isolating molecules underlying the physiologic disorders of the brain.

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4.  Dynamics of changes in blood flow, volume, and oxygenation: implications for dynamic functional magnetic resonance imaging calibration.

Authors:  Ikuhiro Kida; Douglas L Rothman; Fahmeed Hyder
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5.  Mapping oxidative metabolism in the human brain with calibrated fMRI in health and disease.

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6.  Quantitative β mapping for calibrated fMRI.

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7.  A novel approach for selective brain cooling: implications for hypercapnia and seizure activity.

Authors:  Hubert Trübel; Peter Herman; Christoph Kampmann; Ralf Huth; Paul K Maciejewski; Edward Novotny; Fahmeed Hyder
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8.  A BOLD Perspective on Age-Related Neurometabolic-Flow Coupling and Neural Efficiency Changes in Human Visual Cortex.

Authors:  Joanna Lynn Hutchison; Ehsan Shokri-Kojori; Hanzhang Lu; Bart Rypma
Journal:  Front Psychol       Date:  2013-05-03

9.  Multi-timescale modeling of activity-dependent metabolic coupling in the neuron-glia-vasculature ensemble.

Authors:  Renaud Jolivet; Jay S Coggan; Igor Allaman; Pierre J Magistretti
Journal:  PLoS Comput Biol       Date:  2015-02-26       Impact factor: 4.475

  9 in total

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