In vivo multi-slice mapping of myelin water content using T2* decay
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Summary
The results demonstrate the feasibility of in vivo multi-slice mapping of MWF using multi-compartmental analysis of the T(2)* signal decay and show a low specific absorption rate (SAR), especially beneficial for imaging at high field strengths.
- Type
- article
- Published
- 2010-08-01
- Cited by
- 164
- References
- 36
- OpenAlex
- https://openalex.org/W1971082159
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:140204431
Keywords
White matter, Sinc function, Nuclear magnetic resonance, SIGNAL (programming language), Myelin
References
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- Measurement of signal‐to‐noise ratios in sum‐of‐squares MR images
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- Is multicomponent T2 a good measure of myelin content in peripheral nerve?
- A pathology-MRI study of the short-T2 component in formalin-fixed multiple sclerosis brain
- Age, gender, and hemispheric differences in iron deposition in the human brain: An in vivo MRI study
- Testing the three‐pool white matter model adapted for use with T2 relaxometry
- Assignment of the T2 components of amphibian peripheral nerve to their microanatomical compartments
- In vivo visualization of myelin water in brain by magnetic resonance
- Functional connectivity in single and multislice echoplanar imaging using resting-state fluctuations.
- Linear combination of multiecho data: Short T2 component selection
Cited by
- Whole brain multiparametric mapping in two minutes using a dual-flip-angle stack-of-stars blipped multi-gradient-echo acquisition
- Magnetic resonance imaging of brain tissue abnormalities: transverse relaxation time in autism and Tourette syndrome and development of a novel whole-brain myelin mapping technique
- Multivariate combination of magnetization transfer, T2* and B0 orientation to study the myelo-architecture of the in vivo human cortex
- Physiological noise compensation in gradient-echo myelin water imaging
- Probing Signal Phase in Direct Visualization of Short Transverse Relaxation Time Component (ViSTa)
- Rapid Simultaneous Mapping of Total and Myelin Water Content, T1 and T2* in Multiple Sclerosis
- Time-efficient high-resolution whole-brain three-dimensional macromolecular proton fraction mapping
- MRI‐based myelin water imaging: A technical review
- Preliminary Observations on Sensitivity and Specificity of Magnetization Transfer Asymmetry for Imaging Myelin of Rat Brain at High Field
- Peripheral nerve MRI: precision and reproducibility of T2*-derived measurements at 3.0-T
- Myelin water mapping by spatially regularized longitudinal relaxographic imaging at high magnetic fields
- Volumetric R2* mapping using z‐shim multi‐echo gradient echo imaging
- Multi-slice Myelin Water Imaging for Practical Clinical Applications at 3.0 T
- Fast Myelin Water Fraction Estimation Using 2D Multi-Slice CPMG
- Assessment of Iron Deposition and White Matter Maturation in Infant Brains by Using Enhanced T2 Star Weighted Angiography (ESWAN): R2* versus Phase Values
- Monitoring increased iron levels in multiple sclerosis using MRI
- What can we learn from T2* maps of the cortex?
- Toward in vivo histology: A comparison of quantitative susceptibility mapping (QSM) with magnitude-, phase-, and R2⁎-imaging at ultra-high magnetic field strength
- Improvement of the SNR and resolution of susceptibility-weighted venography by model-based multi-echo denoising
- Robust mapping of the myelin water fraction in the presence of noise: Synergic combination of anisotropic diffusion filter and spatially regularized nonnegative least squares algorithm
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