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Diffusion spectrum MRI using body-centered-cubic and half-sphere sampling schemes
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Diffusion spectrum MRI using body-centered-cubic and half-sphere sampling schemes

Li-Wei Kuo, Wen-Yang Chiang, Fang-Cheng YehVan Jay Wedeen
Journal of Neuroscience Methods, 卷.212(1), 頁碼.143-155
2013
PMID: 23059492

摘要

Body-centered-cubic Diffusion MRI Diffusion spectrum MRI Generalized q-sampling imaging Half-sphere Optimum parameters Neuroscience (all)
The optimum sequence parameters of diffusion spectrum MRI (DSI) on clinical scanners were investigated previously. However, the scan time of approximately 30min is still too long for patient studies. Additionally, relatively large sampling interval in the diffusion-encoding space may cause aliasing artifact in the probability density function when Fourier transform is undertaken, leading to estimation error in fiber orientations. Therefore, this study proposed a non-Cartesian sampling scheme, body-centered-cubic (BCC), to avoid the aliasing artifact as compared to the conventional Cartesian grid sampling scheme (GRID). Furthermore, the accuracy of DSI with the use of half-sphere sampling schemes, i.e. GRID102 and BCC91, was investigated by comparing to their full-sphere sampling schemes, GRID203 and BCC181, respectively. In results, smaller deviation angle and lower angular dispersion were obtained by using the BCC sampling scheme. The half-sphere sampling schemes yielded angular precision and accuracy comparable to the full-sphere sampling schemes. The optimum b was approximately 4750s/mm for GRID and 4500s/mm for BCC. In conclusion, the BCC sampling scheme could be implemented as a useful alternative to the GRID sampling scheme. Combination of BCC and half-sphere sampling schemes, that is BCC91, may potentially reduce the scan time of DSI from 30min to approximately 14min while maintaining its precision and accuracy. © 2012 Elsevier B.V.

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