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diffusion tensor imaging-based tractography  (Kamada)

 
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    Structured Review

    Kamada diffusion tensor imaging-based tractography
    DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating <t>tractography</t> into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.
    Diffusion Tensor Imaging Based Tractography, supplied by Kamada, 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/diffusion tensor imaging-based tractography/product/Kamada
    Average 90 stars, based on 1 article reviews
    diffusion tensor imaging-based tractography - by Bioz Stars, 2026-04
    90/100 stars

    Images

    1) Product Images from "Corticospinal tract-sparing intensity-modulated radiotherapy treatment planning"

    Article Title: Corticospinal tract-sparing intensity-modulated radiotherapy treatment planning

    Journal: Reports of Practical Oncology and Radiotherapy

    doi: 10.1016/j.rpor.2014.01.002

    DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating tractography into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.
    Figure Legend Snippet: DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating tractography into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.

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    DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating <t>tractography</t> into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.
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    DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating <t>tractography</t> into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.
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    Image Search Results


    DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating tractography into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.

    Journal: Reports of Practical Oncology and Radiotherapy

    Article Title: Corticospinal tract-sparing intensity-modulated radiotherapy treatment planning

    doi: 10.1016/j.rpor.2014.01.002

    Figure Lengend Snippet: DVHs of IMRT plans. DVHs of IMRT plans of the case 1 (A) and case 2 (B) shown in Fig. 2. Solid and dotted lines represent the plans with dose constraints for the corticospinal tract (Fig. 2A and C) and those without dose constraints (Fig. 2B and D), respectively. DVH analyses revealed that the doses to the corticospinal tracts and the brainstem were diminished by integrating tractography into IMRT planning, while PTV dose coverages were comparable. Light green, orange, green, purple, pink, and light blue lines represent DVHs of PTV1, PTV2, right corticospinal tract (CST-R), left corticospinal tract (CST-L), brainstem, and optic tract, respectively.

    Article Snippet: 39–42 Notably, Kamada et al. confirmed the reliability of diffusion tensor imaging-based tractography by showing a strong correlation between the stimulus intensity of direct fiber stimulation during operation and the distance from the stimulus point to the corticospinal tract on tractography-integrated neuronavigation images.

    Techniques: