Whole-brain changes in white matter microstructure after radiotherapy for nasopharyngeal carcinoma: a diffusion tensor imaging study
European Archives of Oto-Rhino-Laryngology, ISSN: 1434-4726, Vol: 273, Issue: 12, Page: 4453-4459
2016
- 33Citations
- 20Captures
Metric Options: CountsSelecting the 1-year or 3-year option will change the metrics count to percentiles, illustrating how an article or review compares to other articles or reviews within the selected time period in the same journal. Selecting the 1-year option compares the metrics against other articles/reviews that were also published in the same calendar year. Selecting the 3-year option compares the metrics against other articles/reviews that were also published in the same calendar year plus the two years prior.
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Metrics Details
- Citations33
- Citation Indexes33
- 33
- CrossRef2
- Captures20
- Readers20
- 20
Article Description
Radiation-induced local white matter (WM) damage has been observed by diffusion tensor imaging (DTI) within a priori-defined regions of interest following radiotherapy (RT) for nasopharyngeal carcinoma (NPC). In this study, we aimed to detect WM changes throughout the brain of NPC patients by DTI. Tract-based spatial statistics (TBSS) was used to analyze DTI data from 81 NPC patients. Fractional anisotropy (FA) and mean diffusivity (MD) were quantified across the whole brain in separate groups: pre-RT, and <6, 6–12, and >12 months post-RT. We found that fractional anisotropy values were significantly lower in the right frontal, parietal, and occipital WM <6 months post-RT compared with pre-RT and remained significantly lower in the right frontal and parietal WM at >12 months. MD values were significantly higher in the right occipital, bilateral temporal, right occipital–temporal junction, left parietal, left centrum semiovale, and left frontal–parietal junction WM <6 months post-RT and remained higher in the right occipital WM at >12 months. This study suggests that changes in white matter microstructure following RT for NPC were widespread, complex, and dynamic. Diffusion tensor imaging with TBSS analysis allows for early non-invasive detection of RT-induced WM damage.
Bibliographic Details
http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=84994482688&origin=inward; http://dx.doi.org/10.1007/s00405-016-4127-x; http://www.ncbi.nlm.nih.gov/pubmed/27272052; http://link.springer.com/10.1007/s00405-016-4127-x; https://dx.doi.org/10.1007/s00405-016-4127-x; https://link.springer.com/article/10.1007/s00405-016-4127-x
Springer Nature
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