Thalamic transcranial electrical stimulation with temporal interference enhances sleep spindle activity during a daytime nap.

Study objectivesSleep spindles are electroencephalographic elements characteristic of non-rapid eye movement sleep (NREM) generated by thalamo-cortical interactions. Spindles have <italic>been</italic> linked to some of the cognitive benefits afforded by sleep and increased arousal threshold. This p...

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Publicado en:Sleep Advances pp. 1 - 36
Autores principales: Bruno, Simone, Mat, Beril, Schaeffer, Erin L, Haber, Ido, Fan, Zhiwei, Prahl, Sean P, Wilcox, Mackenzie R, Strainis, E, Loring, Madelynn D, Alauddin, Tariq, Smith, Richard F, Achermann, Peter, Beerli, Stefan, Capstick, Myles, Neufeld, Esra, Kuster, Niels, Marshall, William, Albantakis, Larissa, Jones, Stephanie G, Cirelli, Chiara
Formato: Journal Article
Publicado: Oxford University Press / USA Jul2026
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Jul2026
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      pub: Oxford University Press / USA
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        197162658
        10.1093/sleepadvances/zpag069
        197162658
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        atl: Thalamic transcranial electrical stimulation with temporal interference enhances sleep spindle activity during a daytime nap.
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        au:
          Bruno, Simone
          Mat, Beril
          Schaeffer, Erin L
          Haber, Ido
          Fan, Zhiwei
          Prahl, Sean P
          Wilcox, Mackenzie R
          Strainis, E
          Loring, Madelynn D
          Alauddin, Tariq
          Smith, Richard F
          Achermann, Peter
          Beerli, Stefan
          Capstick, Myles
          Neufeld, Esra
          Kuster, Niels
          Marshall, William
          Albantakis, Larissa
          Jones, Stephanie G
          Cirelli, Chiara
      sug:
      ab: Study objectivesSleep spindles are electroencephalographic elements characteristic of non-rapid eye movement sleep (NREM) generated by thalamo-cortical interactions. Spindles have <italic>been</italic> linked to some of the cognitive benefits afforded by sleep and increased arousal threshold. This proof-of-concept study demonstrates that targeting the thalamus with Transcranial Electrical Stimulation with Temporal Interference (TES-TI) can enhance spindle activity.Methods46 participants (24 ± 9.5years; 58.7% F) underwent thalamic TES-TI stimulation during daytime naps. Three stimulation protocols with 15kHz carrier frequency were tested during stage NREM 2: fixed difference frequency of 10Hz (TES15kHz-TI10Hz), difference frequency matched to individual spindle peak, and no difference frequency. Spindle (sigma) band power and integrated spindle activity (ISA) were compared before and during the stimulation, and across stimulation protocols.ResultsTES15kHz-TI10Hz stimulation was associated with increased sigma power (∆x~STIM-PRE= 0.46 log10μV2, <italic>p</italic>= .0042) and ISA (∆x~STIM-PRE= 4.064μV/s, <italic>p</italic>= .030). Cluster-based analysis localized the increase in sigma power across the entire scalp (<italic>p</italic>= .008). Linear mixed effects models showed that both sigma power and ISA during stimulation increased significantly more in TES15kHz-TI10Hz compared to the other stimulation protocols.ConclusionsThis study provides evidence supporting the successful use of TES-TI targeting the thalamus to enhance sleep spindle activity. Stimulation at a fixed difference frequency of 10Hz increased sigma band power and ISA, whereas neither stimulation matched to individual sigma band peak nor TES alone produced comparable effects. These promising results warrant further investigations into the cognitive and clinical impact of TES-TI.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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