We report on genetic and environmental modulation of social cognition abilities and brain volume correlates in two monozygotic twins (Twin1 and Twin2) with genetically confirmed myotonic dystrophytype1 who grew up in different environmental settings. They both underwent neuropsychological assessment (i.e., Intelligent Quotient [IQ], theory of mind, emotion recognition tests), and MRI scanning to evaluate regional brain volumetrics compared to 10 gender and sex-matched healthy controls. Against a normal IQ level in both patients, Twin1 was more impaired in emotional processing and Twin2 in cognitive aspects of social cognition. Both patients showed grey matter (GM) atrophy in Brodmann Areas 23/31 (BA23/31) and BA7 bilaterally, while Twin2 showed additional GM loss in right BA46. Both patients showed a similar pattern of white matter atrophy involving the thalamus, basal ganglia, and uncinate fasciculus. White matter atrophy appeared to be mostly driven by genetics, while grey matter volumes appeared associated with different impairments in social cognition and possibly modulated by environment.

Serra, L., Petrucci, A., Bruschini, M., Botta, A., Campisi, C., Caltagirone, C., et al. (2024). Different neuropsychological and brain volumetric profiles in a pair of identical twins with myotonic dystrophy type 1 indicate a non-genetic modulation of clinical phenotype. NEUROMUSCULAR DISORDERS, 40, 24-30 [10.1016/j.nmd.2024.04.007].

Different neuropsychological and brain volumetric profiles in a pair of identical twins with myotonic dystrophy type 1 indicate a non-genetic modulation of clinical phenotype

Botta A.;Caltagirone C.;
2024-01-01

Abstract

We report on genetic and environmental modulation of social cognition abilities and brain volume correlates in two monozygotic twins (Twin1 and Twin2) with genetically confirmed myotonic dystrophytype1 who grew up in different environmental settings. They both underwent neuropsychological assessment (i.e., Intelligent Quotient [IQ], theory of mind, emotion recognition tests), and MRI scanning to evaluate regional brain volumetrics compared to 10 gender and sex-matched healthy controls. Against a normal IQ level in both patients, Twin1 was more impaired in emotional processing and Twin2 in cognitive aspects of social cognition. Both patients showed grey matter (GM) atrophy in Brodmann Areas 23/31 (BA23/31) and BA7 bilaterally, while Twin2 showed additional GM loss in right BA46. Both patients showed a similar pattern of white matter atrophy involving the thalamus, basal ganglia, and uncinate fasciculus. White matter atrophy appeared to be mostly driven by genetics, while grey matter volumes appeared associated with different impairments in social cognition and possibly modulated by environment.
2024
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MED/03
Settore MED/26
Settore MEDS-01/A - Genetica medica
Settore MEDS-12/A - Neurologia
English
Brain volumetric, social cognition deficit
Cognitive reserve
Environmental factor
Genetic factor
Monozygotic twins
Myotonic dystrophy type-1
Serra, L., Petrucci, A., Bruschini, M., Botta, A., Campisi, C., Caltagirone, C., et al. (2024). Different neuropsychological and brain volumetric profiles in a pair of identical twins with myotonic dystrophy type 1 indicate a non-genetic modulation of clinical phenotype. NEUROMUSCULAR DISORDERS, 40, 24-30 [10.1016/j.nmd.2024.04.007].
Serra, L; Petrucci, A; Bruschini, M; Botta, A; Campisi, C; Caltagirone, C; Bozzali, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/435343
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