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Simultaneous Optimization of MP2RAGE T1 -weighted (UNI) and FLuid And White matter Suppression (FLAWS) brain images at 7T using Extended Phase Graph (EPG) Simulations.
Dokumaci, Ayse Sila; Aitken, Fraser R; Sedlacik, Jan; Bridgen, Pip; Tomi-Tricot, Raphael; Mooiweer, Ronald; Vecchiato, Katy; Wilkinson, Tom; Casella, Chiara; Giles, Sharon; Hajnal, Joseph V; Malik, Shaihan J; O'Muircheartaigh, Jonathan; Carmichael, David W.
Affiliation
  • Dokumaci AS; Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
  • Aitken FR; London Collaborative Ultra high field System (LoCUS), London, United Kingdom.
  • Sedlacik J; Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
  • Bridgen P; London Collaborative Ultra high field System (LoCUS), London, United Kingdom.
  • Tomi-Tricot R; London Collaborative Ultra high field System (LoCUS), London, United Kingdom.
  • Mooiweer R; Radiology Department, Great Ormond Street Hospital for Children, London, United Kingdom.
  • Vecchiato K; Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
  • Wilkinson T; London Collaborative Ultra high field System (LoCUS), London, United Kingdom.
  • Casella C; Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
  • Giles S; London Collaborative Ultra high field System (LoCUS), London, United Kingdom.
  • Hajnal JV; MR Research Collaborations, Siemens Healthcare Limited, Camberley, United Kingdom.
  • Malik SJ; Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
  • O'Muircheartaigh J; MR Research Collaborations, Siemens Healthcare Limited, Camberley, United Kingdom.
  • Carmichael DW; London Collaborative Ultra high field System (LoCUS), London, United Kingdom.
Magn Reson Med ; 89(3): 937-950, 2023 03.
Article in En | MEDLINE | ID: mdl-36352772
ABSTRACT

PURPOSE:

The MP2RAGE sequence is typically optimized for either T1 -weighted uniform image (UNI) or gray matter-dominant fluid and white matter suppression (FLAWS) contrast images. Here, the purpose was to optimize an MP2RAGE protocol at 7 Tesla to provide UNI and FLAWS images simultaneously in a clinically applicable acquisition time at <0.7 mm isotropic resolution.

METHODS:

Using the extended phase graph formalism, the signal evolution of the MP2RAGE sequence was simulated incorporating T2 relaxation, diffusion, RF spoiling, and B1 + variability. Flip angles and TI were optimized at different TRs (TRMP2RAGE ) to produce an optimal contrast-to-noise ratio for UNI and FLAWS images. Simulation results were validated by comparison to MP2RAGE brain scans of 5 healthy subjects, and a final protocol at TRMP2RAGE  = 4000 ms was applied in 19 subjects aged 8-62 years with and without epilepsy.

RESULTS:

FLAWS contrast images could be obtained while maintaining >85% of the optimal UNI contrast-to-noise ratio. Using TI1 /TI2 /TRMP2RAGE of 650/2280/4000 ms, 6/8 partial Fourier in the inner phase-encoding direction, and GRAPPA factor = 4 in the other, images with 0.65 mm isotropic resolution were produced in <7.5 min. The contrast-to-noise ratio was around 20% smaller at TRMP2RAGE  = 4000 ms compared to that at TRMP2RAGE  = 5000 ms; however, the 20% shorter duration makes TRMP2RAGE  = 4000 ms a good candidate for clinical applications example, pediatrics.

CONCLUSION:

FLAWS and UNI images could be obtained in a single scan with 0.65 mm isotropic resolution, providing a set of high-contrast images and full brain coverage in a clinically applicable scan time. Images with excellent anatomical detail were demonstrated over a wide age range using the optimized parameter set.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: White Matter Type of study: Guideline Limits: Child / Humans Language: En Journal: Magn Reson Med Journal subject: DIAGNOSTICO POR IMAGEM Year: 2023 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: White Matter Type of study: Guideline Limits: Child / Humans Language: En Journal: Magn Reson Med Journal subject: DIAGNOSTICO POR IMAGEM Year: 2023 Document type: Article Affiliation country: