Anatomical correlates of dyslexia: frontal and cerebellar findings
Анатомические корреляты дислексии: данные о фронтальных отделах мозга и мозжечке
2003-01-22
SCID: 54.1/2uwwxwc3
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MRI neuroanatomycerebellar anterior lobedyslexiapars triangularisrapid automatic naming
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Abstract (AI)
In this study, we examined the neuroanatomy of dyslexic (14 males, four females) and control (19 males, 13 females) children in grades 4-6 from a family genetics study. The dyslexics had specific deficits in word reading relative to the population mean and verbal IQ, but did not have primary language or motor deficits. Measurements of the posterior temporal lobe, inferior frontal gyrus, cerebellum and whole brain were collected from MRI scans. The dyslexics exhibited significantly smaller right anterior lobes of the cerebellum, pars triangularis bilaterally, and brain volume. Measures of the right cerebellar anterior lobe and the left and right pars triangularis correctly classified 72% of the dyslexic subjects (94% of whom had a rapid automatic naming deficit) and 88% of the controls. The cerebellar anterior lobe and pars triangularis made significant contributions to the classification of subjects after controlling for brain volume. Correlational analyses showed that these neuroanatomical measurements were also significantly correlated with reading, spelling and language measures related to dyslexia. Age was not related to any anatomical variable. Results for the dyslexic children from the family genetics study are discussed with reference to dyslexic adults from a prior study, who were ascertained on the basis of a discrepancy between phonological coding and reading comprehension. The volume of the right anterior lobe of the cerebellum distinguished dyslexic from control participants in both studies. The cerebellum is one of the most consistent locations for structural differences between dyslexic and control participants in imaging studies. This study may be the first to show that anomalies in a cerebellar-frontal circuit are associated with rapid automatic naming and the double-deficit subtype of dyslexia.
Key Findings
1
Cerebellar and frontal anatomical measures predicted group membership beyond the contribution of total brain volume.
2
Dyslexic children had significantly smaller right anterior cerebellar lobes, bilateral pars triangularis, and overall brain volume than controls.
3
Right anterior cerebellar volume distinguished dyslexic and control participants across both the present child sample and a prior adult study, implicating a cerebellar-frontal circuit in rapid automatic naming and double-deficit dyslexia.
4
These neuroanatomical measures correlated significantly with reading, spelling, and language abilities associated with dyslexia, independently of age.
5
Volumes of the right cerebellar anterior lobe and bilateral pars triangularis classified 72% of dyslexic children and 88% of controls.
Research Object
The neuroanatomy of dyslexic and control children, particularly the cerebellum, inferior frontal gyrus, posterior temporal lobe, and whole brain
Research Subject
Structural brain differences and their relationships with reading, spelling, language measures, rapid automatic naming, and dyslexia classification
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2003-01-22
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