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Memory Enhancement in Aging With Closed-Loop tACS

21. juli 2026 opdateret af: Boston University Charles River Campus

Personalized Memory Enhancement in Aging: Pattern-Optimized tACS With Closed-Loop Precision Modulation

This project optimizes high-resolution tACS to improve memory in healthy older adults, advancing drug-free approaches for ADRD. We test stimulation schedules and develop an adaptive, brain-guided tACS system to strengthen memory-supporting networks.

Studieoversigt

Detaljeret beskrivelse

Cognitive decline, especially in memory and executive control, poses an escalating public health challenge as the population ages, contributing to loss of independence, reduced quality of life, and increased healthcare costs associated with Alzheimer's disease and related dementias (ADRD). Despite decades of research, there are few effective, non-pharmacological interventions capable of slowing or reversing these cognitive losses. Transcranial alternating current stimulation (tACS) has recently emerged as a promising, safe, and non-invasive technique for modulating neural rhythms that support memory. However, existing approaches remain limited by one-size-fits-all stimulation schedules that fail to account for individual brain connectivity patterns or dynamic fluctuations in cognitive state.

This project aims to advance precision neuromodulation for cognitive aging by optimizing and personalizing high-resolution tACS protocols to enhance memory in older adults. Building on strong pilot data demonstrating the feasibility of personalized and adaptive stimulation, we will use multimodal imaging (EEG and fMRI) to track changes in frontotemporal synchrony, specifically theta-gamma phase-amplitude coupling and theta phase synchronization, that are known to support memory formation and retrieval.

Aim 2 will develop and test a connectivity-guided closed-loop tACS system that continuously monitors neural synchronization in the frontotemporal network and adjusts stimulation parameters in real time. This adaptive framework is designed to tailor stimulation to each participant's evolving brain state, enabling more efficient and individualized cognitive enhancement than static approaches.

By integrating behavioral, electrophysiological, and neuroimaging measures with adaptive control algorithms, this research will identify reliable biomarkers of responsiveness, elucidate causal mechanisms linking neural synchrony to memory, and yield a new class of personalized, connectivity-guided interventions for cognitive decline. The findings will lay a foundation for scalable, non-invasive, and mechanism-driven treatments for ADRD and age-related memory loss, advancing the broader NIH mission of promoting healthy cognitive aging.

Undersøgelsestype

Interventionel

Tilmelding (Anslået)

160

Fase

  • Ikke anvendelig

Kontakter og lokationer

Dette afsnit indeholder kontaktoplysninger for dem, der udfører undersøgelsen, og oplysninger om, hvor denne undersøgelse udføres.

Studiekontakt

  • Navn: Robert Reinhart, PhD
  • Telefonnummer: (617) 353-9481
  • E-mail: rmgr@bu.edu

Deltagelseskriterier

Forskere leder efter personer, der passer til en bestemt beskrivelse, kaldet berettigelseskriterier. Nogle eksempler på disse kriterier er en persons generelle helbredstilstand eller tidligere behandlinger.

Berettigelseskriterier

Aldre berettiget til at studere

  • Ældre voksen

Tager imod sunde frivillige

Ja

Beskrivelse

Inclusion Criteria:

  • 65 years of age or older
  • normal or corrected-to-normal vision
  • color vision

Exclusion Criteria:

  • pregnant
  • metal implants in head
  • implanted electronic devices
  • history of neurological problems or head injury
  • skin sensitivity
  • claustrophobia
  • dementia (normal Montreal Cognitive Assessment > 25)
  • depression (normal Geriatric Depression Scale < 10)
  • history of psychosis
  • cognitive deficits (MoCA>25)
  • any psychoactive medication

Studieplan

Dette afsnit indeholder detaljer om studieplanen, herunder hvordan undersøgelsen er designet, og hvad undersøgelsen måler.

Hvordan er undersøgelsen tilrettelagt?

Design detaljer

  • Primært formål: Grundvidenskab
  • Tildeling: Randomiseret
  • Interventionel model: Crossover opgave
  • Maskning: Dobbelt

Våben og indgreb

Deltagergruppe / Arm
Intervention / Behandling
Eksperimentel: Peak Frequency
Device: High definition transcranial electrical current stimulation Low-intensity, noninvasive application of electrical current to the human scalp tailored to individual peak frequency with the goal of modulating levels of neuronal excitability.
Eksperimentel: Phase Lag
Device: High definition transcranial electrical current stimulation Low-intensity, noninvasive application of electrical current to the human scalp tailored to individual phase lag with the goal of modulating levels of neuronal excitability.
Eksperimentel: Peak Frequency + Phase Lag
Device: High definition transcranial electrical current stimulation Low-intensity, noninvasive application of electrical current to the human scalp tailored to individual peak frequency and phase lag with the goal of modulating levels of neuronal excitability.
Eksperimentel: Non-Adaptive
Device: High definition transcranial electrical current stimulation Low-intensity, noninvasive application of electrical current to the human scalp not tailored to individual peak frequency or phase lag with the goal of modulating levels of neuronal excitability.

Hvad måler undersøgelsen?

Primære resultatmål

Resultatmål
Foranstaltningsbeskrivelse
Tidsramme
EEG phase locking value (PLV) during working memory retention
Tidsramme: Baseline, Day 2
Phase locking value between frontotemporal EEG electrodes within the theta frequency band during the memory retention interval of the visual working memory task
Baseline, Day 2
Interruption suppression measured behaviorally
Tidsramme: Baseline, Day 2
Memory accuracy performance difference between interruption and control trials on the interruption working memory task
Baseline, Day 2
EEG phase amplitude coupling (PAC) during working memory retention
Tidsramme: Baseline, Day 2
Theta phase gamma amplitude cross-frequency coupling at temporal EEG electrodes during the memory retention interval of the visual working memory task
Baseline, Day 2

Samarbejdspartnere og efterforskere

Det er her, du vil finde personer og organisationer, der er involveret i denne undersøgelse.

Efterforskere

  • Ledende efterforsker: Robert Reinhart, PhD, Boston University Charles River Campus

Datoer for undersøgelser

Disse datoer sporer fremskridtene for indsendelser af undersøgelsesrekord og resumeresultater til ClinicalTrials.gov. Studieregistreringer og rapporterede resultater gennemgås af National Library of Medicine (NLM) for at sikre, at de opfylder specifikke kvalitetskontrolstandarder, før de offentliggøres på den offentlige hjemmeside.

Studer store datoer

Studiestart (Anslået)

1. maj 2028

Primær færdiggørelse (Anslået)

31. januar 2031

Studieafslutning (Anslået)

31. januar 2031

Datoer for studieregistrering

Først indsendt

18. juli 2026

Først indsendt, der opfyldte QC-kriterier

21. juli 2026

Først opslået (Faktiske)

23. juli 2026

Opdateringer af undersøgelsesjournaler

Sidste opdatering sendt (Faktiske)

23. juli 2026

Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier

21. juli 2026

Sidst verificeret

1. juli 2026

Mere information

Begreber relateret til denne undersøgelse

Andre undersøgelses-id-numre

  • 4230E_4

Plan for individuelle deltagerdata (IPD)

Planlægger du at dele individuelle deltagerdata (IPD)?

INGEN

Lægemiddel- og udstyrsoplysninger, undersøgelsesdokumenter

Studerer et amerikansk FDA-reguleret lægemiddelprodukt

Ingen

Studerer et amerikansk FDA-reguleret enhedsprodukt

Ja

produkt fremstillet i og eksporteret fra U.S.A.

Ja

Disse oplysninger blev hentet direkte fra webstedet clinicaltrials.gov uden ændringer. Hvis du har nogen anmodninger om at ændre, fjerne eller opdatere dine undersøgelsesoplysninger, bedes du kontakte register@clinicaltrials.gov. Så snart en ændring er implementeret på clinicaltrials.gov, vil denne også blive opdateret automatisk på vores hjemmeside .

Kliniske forsøg med Peak Frequency

Abonner