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Axial sample motion was corrected using the two-step correction algorithm from our previous study [ 22].
Inter-frame motion was corrected for by frame-by-frame registration (after selecting a reference frame and ignoring early frames with low uptake).
Residual head motion was corrected via SPM5 realignment.
Preprocessing: Functional data were slice-time corrected, motion parameters were estimated, and motion was corrected relative to the first volume of the run.
Head motion was corrected in real-time using Turbo-BrainVoyager.
The effect of head motion was corrected by realigning all scans to the first scan.
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Finally, the analytical model is verified by finite element analysis (FEA) and experiments, and the errors caused by parasitic motion are corrected for this analytical model.
Assuming the RCM caused by angular motion is corrected, we have s f r, t ≈ ∬ x, y ∈ L A x, y ⋅ exp − j 4 π x ω eff t − y c f r + f c ⋅ exp − j 2 π 2 R t c f r + f c dxdy (8).
Residual effects of head motion were corrected for by including the six estimated motion parameters for each subject as regressors of no interest.
Residual effects of head motion were corrected for by including the six estimated motion parameters for each participant as regressors of no interest.
In Fig. 4, 1 Hz motion is corrected by 98.4% which means that the residual sinusoidal motion amplitude from 17.4 arcmin should be 0.28 arcmin (1.6%).
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