Difference between revisions of "2008 IGT Project Week Fast Imaging Library"
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Results (to be completed and presented at the end of the week): | Results (to be completed and presented at the end of the week): | ||
+ | * extended accelerate short axis propeller epi to use partial Fourier | ||
+ | ** issues w/ recon pending due to susceptibility distortion from blade to blade | ||
+ | * implemented both double-sampled and 'racetrack' trajectory in epi psd, to collect self-ref data for b0 field map estimation | ||
+ | ** able to calculate relative phase changes using racetrack reference data | ||
+ | ** may be incompatible with unfold nyquist ghost removal method | ||
+ | * wfu epi psd updated to 3d | ||
+ | * modified fgre to use modular rthawk implementation | ||
+ | * rt epi not accomplished, due to difficulty getting rthawk to run on scanner | ||
+ | |||
+ | [[Image:igtweek08_fil_racetrack.png]] | ||
+ | Fig 1 from Roopchansingh MRM 50:839, 2003 | ||
+ | |||
+ | [[Image:igtweek08_grad_kx.png]] | ||
+ | |||
+ | |||
+ | [[Image:igtweek08_grad_ky.png]] |
Latest revision as of 15:30, 12 December 2008
Home < 2008 IGT Project Week Fast Imaging LibraryBack to 2008_IGT_Project_Week#Projects
Team: Scott Hoge, Bob Kraft
Goals: Further integrate algorithms from the Fast Imaging Library (doc here: http://www.spl.harvard.edu/publications/item/view/1393) to enable interactive EPI measurements for perfusion, fMRI, and temperature monitoring using accelerated and efficient EPI-based MR acquisitions
Approach:
- complete a mechanism to maintain the phase in our pMRI-UNFOLD-EPI-PROPELLER acquisition technique, which is required for both temperature change estimation and EPI distortion correction
- incorporate real-time hooks into EPI sequence, to provide interactive acquisitions
- start investigations into radial EPI
Other Notes:
- This team will spend significant time on the MR scanner. Schedule here: http://calendar.yahoo.com/YYY,5107b4/srt,0/lmrc_ms_scanner/?v=2&t=1228608000
Results (to be completed and presented at the end of the week):
- extended accelerate short axis propeller epi to use partial Fourier
- issues w/ recon pending due to susceptibility distortion from blade to blade
- implemented both double-sampled and 'racetrack' trajectory in epi psd, to collect self-ref data for b0 field map estimation
- able to calculate relative phase changes using racetrack reference data
- may be incompatible with unfold nyquist ghost removal method
- wfu epi psd updated to 3d
- modified fgre to use modular rthawk implementation
- rt epi not accomplished, due to difficulty getting rthawk to run on scanner