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DTI of the Visual Pathway - White Matter Tracts and Cerebral Lesions
Published on: August 26, 2014
Altered White Matter Connectivity Associated with Intergyral Brain Disorganization in Hemiplegic Cerebral Palsy
Christos Papadelis1, Banu Ahtam1, Henry A Feldman2
1Laboratory of Children's Brain Dynamics, Fetal-Neonatal Neuroimaging & Developmental Science Center, Boston Children's Hospital, Harvard Medical School, Boston, MA, USA; Division of Newborn Medicine, Department of Medicine, Boston Children's Hospital, Harvard Medical School, Boston, MA, USA.
Insights
Damaged sensorimotor fibers in children with hemiplegic cerebral palsy (HCP) disrupt brain-wide white matter connections. This study reveals how these fiber damages impact both local and long-range neural pathways in HCP patients.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Neuroimaging
Background:
- Hemiplegic cerebral palsy (HCP) involves sensorimotor pathway damage.
- The impact of this damage on global brain networks remains poorly understood.
Purpose of the Study:
- To investigate the relationship between sensorimotor projection fiber integrity and intergyral association white matter connections in children with HCP.
- To elucidate how structural damage in HCP affects overall brain connectivity.
Main Methods:
- Diffusion tensor imaging (DTI) was used in 10 children with HCP and 16 typically developing children.
- Region-of-interest (ROI) and whole-brain gyrus-based parcellation methods were employed to track specific white matter tracts.
- Analysis included spinothalamic (STh), thalamocortical (ThC), corticospinal (CST), and sensorimotor U- (SMU) fibers, as well as association fibers.
Main Results:
- In the affected hemisphere of HCP children, altered diffusion metrics (increased AD, MD, RD; decreased FA) were observed in sensorimotor projection fibers (STh, ThC, CST, SMU).
- Middle- and long-range association fibers also showed decreased FA and increased AD, MD, RD.
- A significant association was found between the integrity of sensorimotor projection fibers and intergyral association fibers.
Conclusions:
- Structural integrity of sensorimotor projection fibers is compromised in children with HCP.
- Damage to these fibers leads to disorganization of intergyral association white matter connections.
- These findings highlight a global network disruption in HCP originating from sensorimotor pathway damage.
Abstract:
Despite extensive literature showing damages in the sensorimotor projection fibers of children with hemiplegic cerebral palsy (HCP), little is known about how these damages affect the global brain network. In this study, we assess the relationship between the structural integrity of sensorimotor projection fibers and the integrity of intergyral association white matter connections in children with HCP. Diffusion tensor imaging was performed in 10 children with HCP and 16 typically developing children. We estimated the regional and global white-matter connectivity using a region-of-interest (ROI)-based approach and a whole-brain gyrus-based parcellation method. Using the ROI-based approach, we tracked the spinothalamic (STh), thalamocortical (ThC), corticospinal (CST), and sensorimotor U- (SMU) fibers. Using the whole-brain parcellation method, we tracked the short-, middle-, and long-range association fibers. We observed for the more affected hemisphere of children with HCP: (i) an increase in axial diffusivity (AD), mean diffusivity (MD), and radial diffusivity (RD) for the STh and ThC fibers; (ii) a decrease in fractional anisotropy (FA) and an increase in MD and RD for the CST and SMU fibers; in (iii) a decrease in FA and an increase in AD, MD, and RD for the middle- and long-range association fibers; and (iv) an association between the integrity of sensorimotor projection and intergyral association fibers. Our findings indicate that altered structural integrity of the sensorimotor projection fibers disorganizes the intergyral association white matter connections among local and distant regions in children with HCP.
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