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Research ArticlePEDIATRICS

Diffusion-Tensor Imaging for the Detection and Quantification of Treatment-Induced White Matter Injury in Children with Medulloblastoma: A Pilot Study

Pek-Lan Khong, Dora L. W. Kwong, Godfrey C. F. Chan, Jonathan S. T. Sham, Fu-Luk Chan and Gaik-Cheng Ooi
American Journal of Neuroradiology April 2003, 24 (4) 734-740;
Pek-Lan Khong
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Dora L. W. Kwong
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Godfrey C. F. Chan
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Jonathan S. T. Sham
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Fu-Luk Chan
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Gaik-Cheng Ooi
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Article Figures & Data

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    Fig 1.

    Axial T2-weighted images (100/4000/2 [TE/TR/NEX]) showing the locations of typical ROIs used in the study.

    A, Bilateral cerebellar hemispheres.

    B, Pons.

    C, Medulla oblongata.

    D, Bilateral frontal periventricular WM.

    E, Bilateral parietal periventricular WM.

    F, Bilateral corona radiata.

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    Fig 2.

    Healthy 10-year-old control showing MR images at the level of the basal ganglia

    A, Axial T2-weighted images (100/4000/2 [TE/TR/NEX]).

    B, Axial echo-planar spin-echo DT imaging-derived FA maps (minimum/10000/1200/1 [TE/TR/b factor/NEX]; b = 1200 s/mm2 × 25 directions and b = 0).

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    Fig 3.

    A 10-year-old medulloblastoma survivor with treatment-induced WM injury and postsurgical complications of hydrocephalus and shunt infection.

    A, Axial T2-weighted images (100/4000/2 [TE/TR/NEX]).

    B, Axial echo-planar spin-echo DT imaging-derived FA maps (minimum/10000/1200/1 [TE/TR/b factor/NEX]; b = 1200 s/mm2 × 25 directions and b = 0) showing (a) grade 3 white matter changes and (b) reduced signal intensity in the WM compared with the healthy age-matched control, in keeping with reduced FA.

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    Fig 4.

    Graph showing relationship between severity of deterioration of school performance of the nine medulloblastoma survivors, and percentage reduction in supratentorial FA of the medulloblastoma survivors compared with healthy age-matched controls. 1, mild deterioration; 2, moderate deterioration; 3, severe deterioration.

Tables

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    TABLE 1:

    Clinical, MR, and fractional anisotropy data in nine medulloblastoma survivors

    Patient (No.)Age (y)Age (y) at TreatmentInterval (y)Total CRT Dose (Gy)ChemoWMVIFA ▵ (%)Postoperative ComplicationsDeterioration in School Performance
    11913654babyPOG00.3119.2NoneModerate
    21614254.6CCV00.2221.9NoneModerate
    31312150.4CCV00.279.9NoneMild
    4137654babyPOG00.2411.6Cerebellar mutismModerate
    5104654babyPOG30.3346.2Hydrocephalus, shunt infectionSevere
    693654babyPOG10.3115.8NoneModerate
    775250.4babyPOG00.2521.1NoneModerate
    875254CCV00.244Bleeding during surgeryMild
    933150.4babyPOG20.3018.2Cerebellar mutismModerate*
    • Note.—CRT signifies cranial radiation therapy; Chemo, chemotherapy regimen; WM, white matter grade determined by MR imaging (4-point scale [see Methods]); VI, ventricular index (maximum width of the frontal horns divided by the maximum internal skull diameter); FA ▵ (%), percentage of reduction in the supratentorial white matter fractional anisotropy of patients versus controls.

    • * Delayed developmental milestones.

    • View popup
    TABLE 2:

    Fractional anisotropy and mean diffusivity at different anatomic sites in nine medulloblastoma survivors (patients) and age-matched controls

    Fractional anisotropy (FA)Mean Diffusivity (MD)
    Patient (SD)Control (SD)Δ (%)P ValuePatient (SD)Control (SD)Δ (%)P Value
    Pons0.30 (0.04)0.35 (0.02)−12.40.004*1.11 (0.14)1.14 (0.05)−2.80.422
    Cereb0.15 (0.03)0.17 (0.04)−15.70.042†1.37 (0.25)1.09 (0.04)25.90.010†
    Medulla0.31 (0.06)0.36 (0.06)−15.70.030†1.28 (0.21)1.17 (0.13)9.30.270
    FWM0.24 (0.08)0.30 (0.06)−18.40.0791.30 (0.15)1.22 (0.06)6.70.066
    PWM0.33 (0.07)0.41 (0.05)−190.028†1.24 (0.10)1.17 (0.08)5.70.090
    CR0.38 (0.10)0.47 (0.10)−17.90.008*0.95 (0.12)0.92 (0.12)7.10.300
    • Note.—Cereb indicates cerebellar hemisphere; FWM, frontal white matter; PWM, parietal white matter; and CR, corona radiata.

      Δ (%) = Percentage of reduction in FA of patients compared with controls.

    • * P < .01

    • † P < .05.

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American Journal of Neuroradiology: 24 (4)
American Journal of Neuroradiology
Vol. 24, Issue 4
1 Apr 2003
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Diffusion-Tensor Imaging for the Detection and Quantification of Treatment-Induced White Matter Injury in Children with Medulloblastoma: A Pilot Study
Pek-Lan Khong, Dora L. W. Kwong, Godfrey C. F. Chan, Jonathan S. T. Sham, Fu-Luk Chan, Gaik-Cheng Ooi
American Journal of Neuroradiology Apr 2003, 24 (4) 734-740;

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Diffusion-Tensor Imaging for the Detection and Quantification of Treatment-Induced White Matter Injury in Children with Medulloblastoma: A Pilot Study
Pek-Lan Khong, Dora L. W. Kwong, Godfrey C. F. Chan, Jonathan S. T. Sham, Fu-Luk Chan, Gaik-Cheng Ooi
American Journal of Neuroradiology Apr 2003, 24 (4) 734-740;
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  • Diffusion Tensor Imaging Screening of Radiation-Induced Changes in the White Matter after Prophylactic Cranial Irradiation of Patients with Small Cell Lung Cancer: First Results of a Prospective Study
  • White Matter Anisotropy in Post-Treatment Childhood Cancer Survivors: Preliminary Evidence of Association With Neurocognitive Function
  • Evaluation of Treatment-Induced Cerebral White Matter Injury by Using Diffusion-Tensor MR Imaging: Initial Experience
  • Interhemispheric Asymmetry of Brain Diffusivity in Normal Individuals: A Diffusion-Weighted MR Imaging Study
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