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dti matlab toolbox  (MathWorks Inc)


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    Structured Review

    MathWorks Inc dti matlab toolbox
    Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). <t>DTI,</t> <t>diffusion</t> <t>tensor</t> <t>imaging;</t> qT2, quantitative T2. Reproduced with permission from the authors in Ref. .
    Dti Matlab Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/dti matlab toolbox/product/MathWorks Inc
    Average 90 stars, based on 1 article reviews
    dti matlab toolbox - by Bioz Stars, 2026-03
    90/100 stars

    Images

    1) Product Images from "Magnetic Resonance Imaging Biomarkers of Muscle"

    Article Title: Magnetic Resonance Imaging Biomarkers of Muscle

    Journal: Tomography

    doi: 10.3390/tomography10090106

    Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). DTI, diffusion tensor imaging; qT2, quantitative T2. Reproduced with permission from the authors in Ref. .
    Figure Legend Snippet: Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). DTI, diffusion tensor imaging; qT2, quantitative T2. Reproduced with permission from the authors in Ref. .

    Techniques Used: Diffusion-based Assay, Imaging



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    MathWorks Inc dti matlab toolbox
    Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). <t>DTI,</t> <t>diffusion</t> <t>tensor</t> <t>imaging;</t> qT2, quantitative T2. Reproduced with permission from the authors in Ref. .
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    Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). <t>DTI,</t> <t>diffusion</t> <t>tensor</t> <t>imaging;</t> qT2, quantitative T2. Reproduced with permission from the authors in Ref. .
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    Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). <t>DTI,</t> <t>diffusion</t> <t>tensor</t> <t>imaging;</t> qT2, quantitative T2. Reproduced with permission from the authors in Ref. .
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    Image Search Results


    Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). DTI, diffusion tensor imaging; qT2, quantitative T2. Reproduced with permission from the authors in Ref. .

    Journal: Tomography

    Article Title: Magnetic Resonance Imaging Biomarkers of Muscle

    doi: 10.3390/tomography10090106

    Figure Lengend Snippet: Representative images of three athletes showing coronal fat-suppressed T2-weighted images of the hamstring injury depicted by the red oval (first column) together with axial spin-echo EPI images ( b -value = 0 s/mm 2 ) (second column), reconstructed mean diffusivity (MD) maps (third column), and reconstructed qT2 maps (fourth column) at the three time points (time point 1: within 1 week postinjury; time point 2: 2 weeks after visit 1; and time point 3: at clinical return to play). DTI, diffusion tensor imaging; qT2, quantitative T2. Reproduced with permission from the authors in Ref. .

    Article Snippet: Recently, a DTI Matlab toolbox was released that allows users to perform tractography as well as to obtain muscle architectural parameters including fiber length, pennation angle, and curvature [ ]. is an example of fiber tracking in the medial gastrocnemius using this toolbox customized to the acquisition in the authors’ lab.

    Techniques: Diffusion-based Assay, Imaging