The topographic distribution of sleep EEG power is a reflection of brain structure and function. The goal of this study was to examine the degree to which genes contribute to sleep EEG topography during adolescence, a period of brain restructuring and maturation. We recorded high-density sleep EEG in monozygotic (MZ; n = 28) and dizygotic (DZ; n = 22) adolescent twins (mean age = 13.2 ± 1.1 years) at two time points 6 months apart. The topographic distribution of normalized sleep EEG power was examined for the frequency bands delta (1–4.6 Hz) to gamma 2 (34.2–44 Hz) during NREM and REM sleep. We found highest heritability values in the beta band for NREM and REM sleep (0.44 ≤ h2 ≤ 0.57), while environmental factors shared amongst twin sibli...
We measured the electroencephalogram (EEG) in 209 5 year old monozygotic (MZ) and dizygotic (DZ) twi...
Background The human waking EEG spectrum shows high heritability and stability and, despite maturat...
We estimated the genetic and nongenetic (environmental) contributions to individual differences in t...
The topographic distribution of sleep EEG power is a reflection of brain structure and function. The...
Quantifying the degree to which genetic and environmental factors shape brain network connectivity i...
Sleep-specific oscillations of spindles and slow waves are generated through thalamocortical and cor...
Humans have an individual profile of the electroencephalographic power spectra at the 8 to 16Hz freq...
The trait-like nature of electroencephalogram (EEG) is well established. Furthermore, EEG of wake an...
Adolescence development is characterized by significant changes in sleep biology. Despite an overall...
Adolescence development is characterized by significant changes in sleep biology. Despite an overall...
Adolescence development is characterized by significant changes in sleep biology. Despite an overall...
Sleep electroencephalogram (EEG) has a trait-like nature. Several findings highlighted the heritabil...
In order to investigate the genetic components of sleep and, in particular, of REM sleep, we perform...
Alterations of rapid eye movement (REM) sleep have long been observed in patients with psychiatric d...
Waking and sleep data in adults show high heritability and trait-like characteristics in EEG spectra...
We measured the electroencephalogram (EEG) in 209 5 year old monozygotic (MZ) and dizygotic (DZ) twi...
Background The human waking EEG spectrum shows high heritability and stability and, despite maturat...
We estimated the genetic and nongenetic (environmental) contributions to individual differences in t...
The topographic distribution of sleep EEG power is a reflection of brain structure and function. The...
Quantifying the degree to which genetic and environmental factors shape brain network connectivity i...
Sleep-specific oscillations of spindles and slow waves are generated through thalamocortical and cor...
Humans have an individual profile of the electroencephalographic power spectra at the 8 to 16Hz freq...
The trait-like nature of electroencephalogram (EEG) is well established. Furthermore, EEG of wake an...
Adolescence development is characterized by significant changes in sleep biology. Despite an overall...
Adolescence development is characterized by significant changes in sleep biology. Despite an overall...
Adolescence development is characterized by significant changes in sleep biology. Despite an overall...
Sleep electroencephalogram (EEG) has a trait-like nature. Several findings highlighted the heritabil...
In order to investigate the genetic components of sleep and, in particular, of REM sleep, we perform...
Alterations of rapid eye movement (REM) sleep have long been observed in patients with psychiatric d...
Waking and sleep data in adults show high heritability and trait-like characteristics in EEG spectra...
We measured the electroencephalogram (EEG) in 209 5 year old monozygotic (MZ) and dizygotic (DZ) twi...
Background The human waking EEG spectrum shows high heritability and stability and, despite maturat...
We estimated the genetic and nongenetic (environmental) contributions to individual differences in t...