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Diffusional kurtosis imaging of the corpus callosum in autism / Y. V. SUI in Molecular Autism, 9 (2018)
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Titre : Diffusional kurtosis imaging of the corpus callosum in autism Type de document : Texte imprimé et/ou numérique Auteurs : Y. V. SUI, Auteur ; J. DONALDSON, Auteur ; L. MILES, Auteur ; James S. BABB, Auteur ; Francisco Xavier CASTELLANOS, Auteur ; M. LAZAR, Auteur Article en page(s) : 62 p. Langues : Anglais (eng) Mots-clés : Adolescent Adult Autistic Disorder/*diagnostic imaging/physiopathology Case-Control Studies Corpus Callosum/*diagnostic imaging Humans Magnetic Resonance Imaging Wechsler Scales White Matter/diagnostic imaging *Autism *Corpus callosum *Diffusional kurtosis imaging *Interhemispheric connectivity *Processing speed Medicine. All participants provided informed consent at the time of their visit.The authors give consent for this manuscript to be published.The authors declare that they have no competing interests.Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations. Index. décimale : PER Périodiques Résumé : Background: The corpus callosum is implicated in the pathophysiology of autism spectrum disorder (ASD). However, specific structural deficits and underlying mechanisms are yet to be well defined. Methods: We employed diffusional kurtosis imaging (DKI) metrics to characterize white matter properties within five discrete segments of the corpus callosum in 17 typically developing (TD) adults and 16 age-matched participants with ASD without co-occurring intellectual disability (ID). The DKI metrics included axonal water fraction (f axon) and intra-axonal diffusivity (D axon), which reflect axonal density and caliber, and extra-axonal radial (RDextra) and axial (ADextra) diffusivities, which reflect myelination and microstructural organization of the extracellular space. The relationships between DKI metrics and processing speed, a cognitive feature known to be impaired in ASD, were also examined. Results: ASD group had significantly decreased callosal f axon and D axon (p = .01 and p = .045), particularly in the midbody, isthmus, and splenium. Regression analysis showed that variation in DKI metrics, primarily in the mid and posterior callosal regions explained up to 70.7% of the variance in processing speed scores for TD (p = .001) but not for ASD (p > .05). Conclusion: Decreased DKI metrics suggested that ASD may be associated with axonal deficits such as reduced axonal caliber and density in the corpus callosum, especially in the mid and posterior callosal areas. These data suggest that impaired interhemispheric connectivity may contribute to decreased processing speed in ASD participants. En ligne : https://dx.doi.org/10.1186/s13229-018-0245-1 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=389
in Molecular Autism > 9 (2018) . - 62 p.[article] Diffusional kurtosis imaging of the corpus callosum in autism [Texte imprimé et/ou numérique] / Y. V. SUI, Auteur ; J. DONALDSON, Auteur ; L. MILES, Auteur ; James S. BABB, Auteur ; Francisco Xavier CASTELLANOS, Auteur ; M. LAZAR, Auteur . - 62 p.
Langues : Anglais (eng)
in Molecular Autism > 9 (2018) . - 62 p.
Mots-clés : Adolescent Adult Autistic Disorder/*diagnostic imaging/physiopathology Case-Control Studies Corpus Callosum/*diagnostic imaging Humans Magnetic Resonance Imaging Wechsler Scales White Matter/diagnostic imaging *Autism *Corpus callosum *Diffusional kurtosis imaging *Interhemispheric connectivity *Processing speed Medicine. All participants provided informed consent at the time of their visit.The authors give consent for this manuscript to be published.The authors declare that they have no competing interests.Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations. Index. décimale : PER Périodiques Résumé : Background: The corpus callosum is implicated in the pathophysiology of autism spectrum disorder (ASD). However, specific structural deficits and underlying mechanisms are yet to be well defined. Methods: We employed diffusional kurtosis imaging (DKI) metrics to characterize white matter properties within five discrete segments of the corpus callosum in 17 typically developing (TD) adults and 16 age-matched participants with ASD without co-occurring intellectual disability (ID). The DKI metrics included axonal water fraction (f axon) and intra-axonal diffusivity (D axon), which reflect axonal density and caliber, and extra-axonal radial (RDextra) and axial (ADextra) diffusivities, which reflect myelination and microstructural organization of the extracellular space. The relationships between DKI metrics and processing speed, a cognitive feature known to be impaired in ASD, were also examined. Results: ASD group had significantly decreased callosal f axon and D axon (p = .01 and p = .045), particularly in the midbody, isthmus, and splenium. Regression analysis showed that variation in DKI metrics, primarily in the mid and posterior callosal regions explained up to 70.7% of the variance in processing speed scores for TD (p = .001) but not for ASD (p > .05). Conclusion: Decreased DKI metrics suggested that ASD may be associated with axonal deficits such as reduced axonal caliber and density in the corpus callosum, especially in the mid and posterior callosal areas. These data suggest that impaired interhemispheric connectivity may contribute to decreased processing speed in ASD participants. En ligne : https://dx.doi.org/10.1186/s13229-018-0245-1 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=389