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J Magn Reson Imaging ; 41(2): 414-23, 2015 Feb.
Article in English | MEDLINE | ID: mdl-24399480

ABSTRACT

PURPOSE: To study the potential of diffusion tensor imaging (DTI) to serve as a biomarker for radiation-induced brain injury during chemo-radiotherapy (RT) treatment. MATERIALS AND METHODS: Serial DTI data were collected from 18 high-grade glioma (HGG) patients undergoing RT and 7 healthy controls. Changes across time in mean, standard deviation (SD), skewness, and kurtosis of fractional anisotropy (FA), mean diffusivity (MD), axial diffusivity (λa ), and transversal diffusivity (λt ) within the normal-appearing white matter (NAWM) were modeled using a linear mixed-effects model to assess dose dependent changes of five dose bins (0-60 Gy), and global changes compared with a control group. RESULTS: Mean MD, λa and λt were all significantly increasing in >41 Gy dose regions (0.14%, 0.10%, and 0.18% per week) compared with <12 Gy regions. SD λt had significant dose dependent time evolution of 0.019*dose per week. Mean and SD MD, λa and λt in the global NAWM of the patient group significantly increased (mean; 0.06%, 0.03%, 0.09%, and SD; 0.57%, 0.34%, 0.51 per week) compared with the control group. The changes were significant at week 6 of, or immediately after RT. CONCLUSION: DTI is not sensitive to acute global NAWM changes during the treatment of HGG, but sensitive to early posttreatment changes.


Subject(s)
Brain Neoplasms/radiotherapy , Diffusion Tensor Imaging/methods , Glioma/radiotherapy , Radiation Injuries/diagnosis , White Matter/radiation effects , Adult , Aged , Anisotropy , Brain Neoplasms/surgery , Case-Control Studies , Combined Modality Therapy , Female , Glioma/surgery , Humans , Image Interpretation, Computer-Assisted , Male , Middle Aged , Neoplasm Grading
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