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Published on: September 12, 2011
Multiecho Resting-State Functional Magnetic Resonance Imaging Analysis of Attention-Deficit/Hyperactivity Disorder
Mitchell A Batschelett1, Karlee Y Migneault2, Lindsey Aschbacher-Smith3
1Neurodevelopmental Disorders Prevention Center, Perinatal Institute, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio; Medical Scientist Training Program, University of Cincinnati College of Medicine, Cincinnati, Ohio.
Background:
Neurofibromatosis type 1 (NF1) is a heterogeneous neurodevelopmental disorder where motor deficits and attention-deficit/hyperactivity disorder (ADHD) occur at higher rates than typical populations. To characterize network-level changes associated with these impairments, we compared functional connectivity in youth with NF1 to typically developing controls. In the NF1 cohort, we analyzed relationships between functional connectivity, motor impairment, and ADHD severity.
Methods:
Thirty-two participants (16 NF1, 16 typically developing; 8-16 years) underwent resting-state functional magnetic resonance imaging. Seed-to-voxel analyses were conducted for network seeds (sensorimotor, default mode, salience, and dorsal attention). Group differences were tested across brain voxels, and we examined brain-behavior associations within the NF1 group by correlating functional connectivity with motor scores from the Physical and Neurological Examination of Subtle Signs and ADHD severity from the parent-reported ADHD rating scale.
Results:
Youth with NF1 displayed cortico-cortical hyperconnectivity and cortico-subcortical hypoconnectivity within the sensorimotor network, and hyperconnectivity within and between default mode, dorsal attention, frontoparietal, and visuospatial networks. In youth with NF1, poorer motor performance was associated with reduced cortico-cortical intrasensorimotor and sensorimotor-visuospatial connectivity. Greater inattentive symptoms were linked to decreased default mode-sensorimotor connectivity, increased default mode-visuospatial connectivity, and increased dorsal attention-frontoparietal connectivity. Default mode-sensorimotor/visuospatial hyperconnectivity correlated with worse total ADHD symptoms.
Conclusions:
Ineffective integration across default mode, sensorimotor, and visuospatial networks may be linked to motor and attentional phenotypes in NF1 and may serve as a candidate biomarker, pending replication in larger, more heterogeneous samples. We also demonstrate preliminary evidence of compensatory hyperconnectivity in youth with NF1 presenting with co-occurring neurodevelopmental difficulties.
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