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1.
J Sleep Res ; 32(4): e13846, 2023 08.
Artículo en Inglés | MEDLINE | ID: mdl-36806335

RESUMEN

Slow-wave sleep (SWS) is a fundamental physiological process, and its modulation is of interest for basic science and clinical applications. However, automatised protocols for the suppression of SWS are lacking. We describe the development of a novel protocol for the automated detection (based on the whole head topography of frontal slow waves) and suppression of SWS (through closed-loop modulated randomised pulsed noise), and assessed the feasibility, efficacy and functional relevance compared to sham stimulation in 15 healthy young adults in a repeated-measure sleep laboratory study. Auditory compared to sham stimulation resulted in a highly significant reduction of SWS by 30% without affecting total sleep time. The reduction of SWS was associated with an increase in lighter non-rapid eye movement sleep and a shift of slow-wave activity towards the end of the night, indicative of a homeostatic response and functional relevance. Still, cumulative slow-wave activity across the night was significantly reduced by 23%. Undisturbed sleep led to an evening to morning reduction of wake electroencephalographic theta activity, thought to reflect synaptic downscaling during SWS, while suppression of SWS inhibited this dissipation. We provide evidence for the feasibility, efficacy, and functional relevance of a novel fully automated protocol for SWS suppression based on auditory closed-loop stimulation. Future work is needed to further test for functional relevance and potential clinical applications.


Asunto(s)
Sueño de Onda Lenta , Adulto Joven , Humanos , Sueño de Onda Lenta/fisiología , Estudios de Factibilidad , Sueño/fisiología , Polisomnografía , Electroencefalografía/métodos , Estimulación Acústica/métodos
2.
Neuropsychobiology ; 79(4-5): 284-292, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32408296

RESUMEN

Arousal and sleep represent fundamental physiological domains, and alterations in the form of insomnia (difficulty falling or staying asleep) or hypersomnia (increased propensity for falling asleep or increased sleep duration) are prevalent clinical problems. Current first-line treatments include psychotherapy and pharmacotherapy. Despite significant success, a number of patients do not benefit sufficiently. Progress is limited by an incomplete understanding of the -neurobiology of insomnia and hypersomnia. This work summarizes current concepts of the regulation of arousal and sleep and its modulation through noninvasive brain stimulation (NIBS), including transcranial magnetic, current, and auditory stimulation. Particularly, we suggest: (1) characterization of patients with sleep problems - across diagnostic entities of mental disorders - based on specific alterations of sleep, including alterations of sleep slow waves, sleep spindles, cross-frequency coupling of brain oscillations, local sleep-wake regulation, and REM sleep and (2) targeting these with specific NIBS techniques. While evidence is accumulating that the modulation of specific alterations of sleep through NIBS is feasible, it remains to be tested whether this translates to clinically relevant effects and new treatment developments.


Asunto(s)
Estimulación Acústica , Nivel de Alerta , Trastornos de Somnolencia Excesiva/terapia , Trastornos del Inicio y del Mantenimiento del Sueño/terapia , Fases del Sueño , Estimulación Transcraneal de Corriente Directa , Estimulación Magnética Transcraneal , Nivel de Alerta/fisiología , Trastornos de Somnolencia Excesiva/fisiopatología , Humanos , Trastornos del Inicio y del Mantenimiento del Sueño/fisiopatología , Fases del Sueño/fisiología
3.
Cereb Cortex ; 28(12): 4222-4233, 2018 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-29088345

RESUMEN

Despite many behavioral and neuroimaging investigations, it remains unclear how the human cortex represents spectrotemporal sound features during auditory imagery, and how this representation compares to auditory perception. To assess this, we recorded electrocorticographic signals from an epileptic patient with proficient music ability in 2 conditions. First, the participant played 2 piano pieces on an electronic piano with the sound volume of the digital keyboard on. Second, the participant replayed the same piano pieces, but without auditory feedback, and the participant was asked to imagine hearing the music in his mind. In both conditions, the sound output of the keyboard was recorded, thus allowing precise time-locking between the neural activity and the spectrotemporal content of the music imagery. This novel task design provided a unique opportunity to apply receptive field modeling techniques to quantitatively study neural encoding during auditory mental imagery. In both conditions, we built encoding models to predict high gamma neural activity (70-150 Hz) from the spectrogram representation of the recorded sound. We found robust spectrotemporal receptive fields during auditory imagery with substantial, but not complete overlap in frequency tuning and cortical location compared to receptive fields measured during auditory perception.


Asunto(s)
Percepción Auditiva/fisiología , Corteza Cerebral/fisiología , Ritmo Gamma , Imaginación/fisiología , Música , Neuronas/fisiología , Estimulación Acústica , Mapeo Encefálico/métodos , Potenciales Evocados Auditivos , Retroalimentación Sensorial , Humanos
4.
Environ Sci Technol ; 50(19): 10465-10475, 2016 10 04.
Artículo en Inglés | MEDLINE | ID: mdl-27635434

RESUMEN

Peatlands frequently serve as efficient biogeochemical traps for U. Mechanisms of U immobilization in these organic matter-dominated environments may encompass the precipitation of U-bearing mineral(oid)s and the complexation of U by a vast range of (in)organic surfaces. The objective of this work was to investigate the spatial distribution and molecular binding mechanisms of U in soils of an alpine minerotrophic peatland (pH 4.7-6.6, Eh = -127 to 463 mV) using microfocused X-ray fluorescence spectrometry and bulk and microfocused U L3-edge X-ray absorption spectroscopy. The soils contained 2.3-47.4 wt % organic C, 4.1-58.6 g/kg Fe, and up to 335 mg/kg geogenic U. Uranium was found to be heterogeneously distributed at the micrometer scale and enriched as both U(IV) and U(VI) on fibrous and woody plant debris (48 ± 10% U(IV), x̅ ± σ, n = 22). Bulk U X-ray absorption near edge structure (XANES) spectroscopy revealed that in all samples U(IV) comprised 35-68% of total U (x̅ = 50%, n = 15). Shell-fit analyses of bulk U L3-edge extended X-ray absorption fine structure (EXAFS) spectra showed that U was coordinated to 1.3 ± 0.2 C atoms at a distance of 2.91 ± 0.01 Å (x̅ ± σ), which implies the formation of bidentate-mononuclear U(IV/VI) complexes with carboxyl groups. We neither found evidence for U shells at ∼3.9 Å, indicative of mineral-associated U or multinuclear U(IV) species, nor for a substantial P/Fe coordination of U. Our data indicates that U(IV/VI) complexation by natural organic matter prevents the precipitation of U minerals as well as U complexation by Fe/Mn phases at our field site, and suggests that organically complexed U(IV) is formed via reduction of organic matter-bound U(VI).


Asunto(s)
Material Particulado , Uranio/química , Minerales/química , Espectrometría por Rayos X , Espectroscopía de Absorción de Rayos X
5.
Brain Topogr ; 25(4): 423-30, 2012 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-22534936

RESUMEN

Music is capable of inducing emotional arousal. While previous studies used brief musical excerpts to induce one specific emotion, the current study aimed to identify the physiological correlates of continuous changes in subjective emotional states while listening to a complete music piece. A total of 19 participants listened to the first movement of Ludwig van Beethoven's 5th symphony (duration: ~7.4 min), during which a continuous 76-channel EEG was recorded. In a second session, the subjects evaluated their emotional arousal during the listening. A fast fourier transform was performed and covariance maps of spectral power were computed in association with the subjective arousal ratings. Subjective arousal ratings had good inter-individual correlations. Covariance maps showed a right-frontal suppression of lower alpha-band activity during high arousal. The results indicate that music is a powerful arousal-modulating stimulus. The temporal dynamics of the piece are well suited for sequential analysis, and could be necessary in helping unfold the full emotional power of music.


Asunto(s)
Ritmo alfa/fisiología , Nivel de Alerta/fisiología , Emociones/fisiología , Lóbulo Frontal/fisiología , Lateralidad Funcional/fisiología , Música , Estimulación Acústica , Adolescente , Adulto , Percepción Auditiva/fisiología , Mapeo Encefálico , Electroencefalografía , Femenino , Humanos , Masculino , Tiempo de Reacción/fisiología , Adulto Joven
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