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Heterochronicity of white matter development and aging explains regional patient control differences in schizophrenia

Peter Kochunov, Habib Ganjgahi, Anderson Winkler, Sinead Kelly, Dinesh K. Shukla, Xiaoming Du · Human Brain Mapping · 2016

AbstractBackgroundAltered brain connectivity is implicated in the development and clinical burden of schizophrenia. Relative to matched controls, schizophrenia patients show (1) a global and regional reduction in the integrity of the brain's white matter (WM), assessed using diffusion tensor imaging (DTI) fractional anisotropy (FA), and (2) accelerated age‐related decline in FA values. In the largest mega‐analysis to date, we tested if differences in the trajectories of WM tract development influenced patient–control differences in FA. We also assessed if specific tracts showed exacerbated decline with aging.MethodsThree cohorts of schizophrenia patients (total n = 177) and controls (total n = 249; age = 18‐61 years) were ascertained with three 3T Siemens MRI scanners. Whole‐brain and regional FA values were extracted using ENIGMA‐DTI protocols. Statistics were evaluated using mega‐ and meta‐analyses to detect effects of diagnosis and age‐by‐diagnosis interactions.ResultsIn mega‐analysis of whole‐brain averaged FA, schizophrenia patients had lower FA (P = 10−11) and faster age‐related decline in FA (P = 0.02) compared with controls. Tract‐specific heterochronicity measures, that is

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