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Altered brain tissue viscoelasticity in pediatric cerebral palsy measured by magnetic resonance elastography

机译:磁共振弹性成像技术测量小儿脑瘫的脑组织粘弹性变化

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摘要

Cerebral palsy (CP) is a neurodevelopmental disorder that results in functional motor impairment and disability in children. CP is characterized by neural injury though many children do not exhibit brain lesions or damage. Advanced structural MRI measures may be more sensitively related to clinical outcomes in this population. Magnetic resonance elastography (MRE) measures the viscoelastic mechanical properties of brain tissue, which vary extensively between normal and disease states, and we hypothesized that the viscoelasticity of brain tissue is reduced in children with CP. Using a global region-of-interest-based analysis, we found that the stiffness of the cerebral gray matter in children with CP is significantly lower than in typically developing (TD) children, while the damping ratio of gray matter is significantly higher in CP. A voxel-wise analysis confirmed this finding, and additionally found stiffness and damping ratio differences between groups in regions of white matter. These results indicate that there is a difference in brain tissue health in children with CP that is quantifiable through stiffness and damping ratio measured with MRE. Understanding brain tissue mechanics in the pediatric CP population may aid in the diagnosis and evaluation of CP.
机译:脑瘫(CP)是一种神经发育障碍,会导致儿童运动功能障碍和残疾。尽管许多儿童没有表现出脑部病变或损害,但CP的特征是神经损伤。先进的结构性MRI测量可能与该人群的临床结局更为敏感。磁共振弹性成像(MRE)测量脑组织的粘弹性机械性能,该状态在正常状态和疾病状态之间差异很大,我们假设CP儿童会降低脑组织的粘弹性。使用基于全局兴趣区域的分析,我们发现CP患儿脑灰质的刚度显着低于正常发育(TD)儿童,而CP患儿灰质的阻尼比明显更高。体素分析证实了这一发现,并且还发现了白质区域中各组之间的刚度和阻尼比差异。这些结果表明,CP患儿的脑组织健康存在差异,可通过MRE测得的刚度和阻尼比来量化。了解小儿CP人群的脑组织力学可能有助于CP的诊断和评估。

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