MRI diffusion indices sampled along streamline trajectories: quantitative tractography mapping
Abstract Several useful tractography-derived maps have recently been introduced, such as track density imaging (TDI) and the average pathlength map (APM). Here, an extension to these techniques is introduced by sampling diffusion indices along streamline trajectories (DIST). With this approach, voxe...
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Published in: | Brain connectivity Vol. 1; no. 4; p. 331 |
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Abstract | Abstract Several useful tractography-derived maps have recently been introduced, such as track density imaging (TDI) and the average pathlength map (APM). Here, an extension to these techniques is introduced by sampling diffusion indices along streamline trajectories (DIST). With this approach, voxels contain summary information of diffusivity measures within streamlines. The diffusion metrics can also be used as weighting factors for streamline number or length, generating DIST-weighted TDI and DIST-weighted APM, respectively. Furthermore, when higher-order models of diffusion are used to estimate the fiber orientation distribution within each voxel, it is possible to obtain directional TDI, APM, DIST, and DIST-weighted TDI and APM. The reproducibility of this approach using two b-values (1000 and 3000 s/mm(2)) and the effect of pathologic abnormalities are demonstrated. |
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AbstractList | Abstract Several useful tractography-derived maps have recently been introduced, such as track density imaging (TDI) and the average pathlength map (APM). Here, an extension to these techniques is introduced by sampling diffusion indices along streamline trajectories (DIST). With this approach, voxels contain summary information of diffusivity measures within streamlines. The diffusion metrics can also be used as weighting factors for streamline number or length, generating DIST-weighted TDI and DIST-weighted APM, respectively. Furthermore, when higher-order models of diffusion are used to estimate the fiber orientation distribution within each voxel, it is possible to obtain directional TDI, APM, DIST, and DIST-weighted TDI and APM. The reproducibility of this approach using two b-values (1000 and 3000 s/mm(2)) and the effect of pathologic abnormalities are demonstrated. |
Author | Rose, Stephen E Pannek, Kerstin Mathias, Jane L |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22432422$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_neuroimage_2013_11_016 crossref_primary_10_1016_j_neuroimage_2013_12_047 crossref_primary_10_1016_j_neuroimage_2015_05_070 crossref_primary_10_1007_s10334_017_0608_1 crossref_primary_10_1016_j_neuroimage_2017_09_028 crossref_primary_10_1007_s00247_012_2427_x crossref_primary_10_1016_j_expneurol_2019_01_007 crossref_primary_10_1016_j_neuroimage_2013_07_077 |
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Snippet | Abstract Several useful tractography-derived maps have recently been introduced, such as track density imaging (TDI) and the average pathlength map (APM).... |
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SubjectTerms | Brain - physiology Brain Injuries - diagnosis Brain Injuries - physiopathology Brain Mapping - methods Diffusion Magnetic Resonance Imaging - methods Diffusion Tensor Imaging - methods Female Humans Male Middle Aged Reproducibility of Results Young Adult |
Title | MRI diffusion indices sampled along streamline trajectories: quantitative tractography mapping |
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