Structure of brain grey and white matter in infants with spastic cerebral palsy and periventricular white matter injury

部分各向异性 白质 灰质 痉挛的 心理学 胼胝体 磁共振弥散成像 神经科学 磁共振成像 脑瘫 医学 放射科 精神科
作者
Bo Liu,Ying Peng,Yanli Yang,Pengyu Li,Duoli Chen,Dingxin Nie,Heng Liu,Peng Liu
出处
期刊:Developmental Medicine & Child Neurology [Wiley]
卷期号:66 (4): 514-522 被引量:2
标识
DOI:10.1111/dmcn.15739
摘要

Abstract Aim To investigate the possible covariation of grey matter volume (GMV) and white matter fractional anisotropy in infants with spastic cerebral palsy (CP) and periventricular white matter injury. Method Thirty‐nine infants with spastic CP and 25 typically developing controls underwent structural magnetic resonance imaging and diffusion tensor imaging. Multimodal canonical correlation analysis with joint independent component analysis were used to capture differences in GMV and fractional anisotropy between groups. Correlation analysis was performed between imaging findings and clinical features. Results Infants with spastic CP showed one joint group‐discriminating component (i.e. GMV‐fractional anisotropy) associated with regions in the cortico‐basal ganglia‐thalamo‐cortical loop and in the corpus callosum compared to typically developing controls and one modality‐specific group‐discriminating component (i.e. GMV). Significant negative correlations were found between loadings in certain regions and the motor function score in spastic CP. Interpretation In infants with spastic CP, covarying GMV‐fractional anisotropy and altered GMV in specific regions were implicated in motor dysfunction, which confirmed that simultaneous GMV and fractional anisotropy changes underly motor deficits, but might also extend to sensory, cognitive, or visual dysfunction. These findings also suggest that multimodal fusion analysis allows for a more comprehensive understanding of the relevance between grey and white matter structures and its crucial role in the neuropathological mechanisms of spastic CP.

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