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Additionally, 4 dummy scans were acquired to allow for steady magnetization.
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At present we report on the magnetization measurements at 4.2 and 77 K in the steady magnetic field up to 14 T and in the pulsed field up to 34 T with a pulse duration of 10 ms at T = 4.2 K.
First 20 seconds of data were discarded to allow steady state magnetization.
Each run was preceded by several dummy scans ensuring steady state magnetization conditions.
An additional 5 volumes (11.7 sec) were acquired at the start of each scan run in all experiments to allow sufficient time for reaching steady state magnetization.
The first three images were discarded to allow steady state magnetization.
Eighteen seconds of gradient and radiofrequency pulses preceded the actual data acquisition to allow tissue to reach steady state magnetization.
On every scan run, 228 volumes were acquired, including four dummy volumes at the start of each scan to allow the brain to reach steady state magnetization.
Six additional volumes per session were acquired at the beginning of each series to allow for steady state magnetization and were subsequently discarded from further analysis.
To allow for steady state magnetization, five dummy scans were acquired at the start of each run and excluded from analysis.
To minimize these errors and improve the accuracy of R1 values, we used a fitting routine that models all the RF pulses, recovery periods and the approach to steady state magnetization assuming a constant flip angle across all imaging planes.
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