Thalamic connectivity topography in newborns with spina bifida: association with neurological functional level but not developmental outcome at 2 years

Abstract Spina bifida affects spinal cord and cerebral development, leading to motor and cognitive delay. We investigated whether there are associations between thalamocortical connectivity topography, neurological function, and developmental outcomes in open spina bifida. Diffusion tensor MRI was u...

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Veröffentlicht in:Cerebral cortex (New York, N.Y. 1991) N.Y. 1991), 2024-01, Vol.34 (1)
Hauptverfasser: Ji, Hui, Payette, Kelly, Speckert, Anna, Tuura, Ruth, Grehten, Patrice, Kottke, Raimund, Ochseinbein-Kölble, Nicole, Hagmann, Cornelia, Mazzone, Luca, Meuli, Martin, Padden, Beth, Hackenberg, Annette, Wille, David-Alexander, Moehrlen, Ueli, Latal, Beatrice, SPINA BIFIDA STUDY GROUP ZURICH, Jakab, Andras
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Sprache:eng
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Zusammenfassung:Abstract Spina bifida affects spinal cord and cerebral development, leading to motor and cognitive delay. We investigated whether there are associations between thalamocortical connectivity topography, neurological function, and developmental outcomes in open spina bifida. Diffusion tensor MRI was used to assess thalamocortical connectivity in 44 newborns with open spina bifida who underwent prenatal surgical repair. We quantified the volume of clusters formed based on the strongest probabilistic connectivity to the frontal, parietal, and temporal cortex. Developmental outcomes were assessed using the Bayley III Scales, while the functional level of the lesion was assessed by neurological examination at 2 years of age. Higher functional level was associated with smaller thalamo-parietal, while lower functional level was associated with smaller thalamo-temporal connectivity clusters (Bonferroni-corrected P 
ISSN:1047-3211
1460-2199
DOI:10.1093/cercor/bhad438