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Traumatic brain injury: a comparison of diffusion and volumetric magnetic resonance imaging measures

作者:Niall Bourke, Maria Yanez Lopez, Peter O Jenkins, Sara De Simoni, James H. Cole, Peter Lally, Emma‐Jane Mallas, Hui Zhang, David Sharp · 发表于:Brain Communications · 年份:2021 · DOI:10.1093/braincomms/fcab006 · 被引用次数:26 · 研究领域:Advanced Neuroimaging Techniques and Applications、Traumatic Brain Injury Research、Traumatic Brain Injury and Neurovascular Disturbances

Cognitive impairment after traumatic brain injury remains hard to predict. This is partly because axonal injury, which is of fundamental importance, is difficult to measure clinically. Advances in MRI allow axonal injury to be detected after traumatic brain injury, but the most sensitive approach is unclear. Here, we compare the performance of diffusion tensor imaging, neurite orientation dispersion and density-imaging and volumetric measures of brain atrophy in the identification of white-matter abnormalities after traumatic brain injury. Thirty patients with moderate-severe traumatic brain injury in the chronic phase and 20 age-matched controls had T1-weighted and diffusion MRI. Neuropsychological tests of processing speed, executive functioning and memory were used to detect cognitive impairment. Extensive abnormalities in neurite density index and orientation dispersion index were observed, with distinct spatial patterns. Fractional anisotropy and mean diffusivity also indicated widespread abnormalities of white-matter structure. Neurite density index was significantly correlated with processing speed. Slower processing speed was also related to higher mean diffusivity in the corticospinal tracts. Lower white-matter volumes were seen after brain injury with greater effect sizes compared to diffusion metrics; however, volume was not sensitive to changes in cognitive performance. Volume was the most sensitive at detecting change between groups but was not specific for deter...