2015
DOI: 10.1016/j.jneumeth.2015.06.007
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Interpolation of orientation distribution functions in diffusion weighted imaging using multi-tensor model

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Cited by 4 publications
(3 citation statements)
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“…This ODF is a function of the distribution of water movement and its peaks are a suitable estimate for the orientation of track at a voxel. Afterward, a deterministic local fiber tracking algorithm was used just in the white matter, [16] with the following set of parameters: min separation angle = 30°, step size = 1, and number of seed in each voxel = 8. Three parts of the ARAS were reconstructed similarly to.…”
Section: Case Reportmentioning
confidence: 99%
“…This ODF is a function of the distribution of water movement and its peaks are a suitable estimate for the orientation of track at a voxel. Afterward, a deterministic local fiber tracking algorithm was used just in the white matter, [16] with the following set of parameters: min separation angle = 30°, step size = 1, and number of seed in each voxel = 8. Three parts of the ARAS were reconstructed similarly to.…”
Section: Case Reportmentioning
confidence: 99%
“…This ODF is a function of the distribution of water movement, and its peaks are a suitable estimate for the orientation of each tract at each voxel. Afterwards, a deterministic local fiber tracking algorithm was applied for the WM 61 , with the following set of parameters: min separation angle = 30°, step size = 1 and number of seeds in each voxel = 8. Subsequently, the number of tracts that may connect every possible pair of nuclei between the AAN and the cortex was calculated (8 AAN nuclei 14 × 48 cortical nuclei 57 ).…”
Section: Methodsmentioning
confidence: 99%
“…This ODF is a function of the distribution of water movement, and its peaks are a suitable estimate for the orientation of each tract at each voxel. Afterwards, a deterministic local ber tracking algorithm was applied for the WM 58 , with the following set of parameters: min separation angle = 30°, step size = 1 and number of seeds in each voxel = 8. Subsequently, the number of tracts that may connect every possible pair of nuclei between the AAN and the cortex was calculated (8 AAN nuclei x 48 cortical nuclei).…”
Section: Aan Structural Connectivitymentioning
confidence: 99%