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We have performed a numerical analysis to compare the SNR per unit scan time corresponding to different acquisition schemes and to illustrate the need for using either partial-Fourier or parallel partial-Fourier EPI to improve the SNR per unit scan time, particularly for imaging tissues with short T2 components (e.g., myelin) [ 51].
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Table 1 shows detailed comparison of the complexity of different FFT-based acquisition schemes.
First, data were corrected for slice time differences to compensate for different acquisition times due to the interleaved slice acquisition scheme in each volume.
The proposed method is suitable for different types of acquisition scheme and its effectiveness is proved by simulations and examples on real data.
k includes the four different acquisition directions.
These two acquisition schemes are detailed in the sections below.
Figure 5 Performances of BMAC when using different acquisition periods.
Fig. 10 Sample clinical images with different acquisition times.
Figure 6 The ROC comparison among different acquisition methods.
As a result, these methods require longer acquisition schemes, which are less feasible in clinical setups.
This is consistent with our previous findings for two-wavelength acquisition schemes [ 21].
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