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Enrolling by Invitation

NCT Number: NCT07378332

Towards Causal Mapping of Episodic Memory iEEG Networks Via Multi-method Brain Stimulation

Human intracranial electroencephalography (EEG) can provide brain-activity correlates of memory with high spatial and temporal resolution. This project will test functional relevance of these neural signals for memory behavioral performance using novel noninvasive and invasive stimulation methods. Findings will advance understanding of brain mechanisms for memory, as is needed to accelerate progress in the treatment of memory disorders.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Northwestern Memorial Hospital, Chicago, Illinois, United States

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About this study

Episodic memory impairment occurs when diseases impact the hippocampus and its network of interacting brain areas. Better understanding of brain mechanisms for memory is required to development treatments. This project will develop experimental approaches that use stimulation to manipulate brain-behavior relationships in humans and thereby directly test how the hippocampal network supports memory. Intracranial electroencephalography (iEEG) provides opportunities to study the neural basis of memory with high spatial and temporal resolution. Many experiments have identified iEEG signals associated with memory, for instance by comparing instances of memory success to failure. However, the functional relevance of these signals remains unclear, as such comparisons can identify signals of extraneous, co-occurring, cognitive processes. A routine approach to address this limitation in the behavioral neurosciences is via bi-directional manipulations, i.e., exogenous enhancement or inhibition of the putative neural process and tests of corresponding enhancement or inhibition of behavioral performance. This approach has been underutilized in human iEEG memory research, in part due to difficulties in reliably influencing memory or neural signals given currently available manipulations, such as direct electrical stimulation (DES) through iEEG electrodes. As a route to achieve bi-directional manipulation experiments in human iEEG memory research, this project utilizes a noninvasive electromagnetic stimulation tool that reliably and robustly influences hippocampal network activity and memory performance, called "hippocampal indirectly targeted stimulation" (HITS). HITS will be used with iEEG for the first time to identify activity patterns of the hippocampal network related to memory behavioral performance enhancement versus impairment. To rigorously test for behavioral relevance, we will use a closed-loop machine-learning approach to identify DES parameters that reproduce the hippocampal-network iEEG activity patterns generated by HITS, and then test whether delivery of DES to enhance or inhibit these hippocampal-network iEEG activity patterns produces corresponding enhancement versus impairment of memory behavioral performance. Thus, bidirectional manipulation will be used to directly/causally test iEEG signals of memory behavior. Group-level modeling of DES parameters that mimic the effects of HITS will be used to broaden the accessibility of bidirectional manipulations for future research that tests memory mechanisms in larger iEEG samples across multiple sites that lack the technical capability for HITS. Across three sites, will test whether bi-directional manipulations of hippocampal-network activity involvement in memory performance are more successful for HITS-informed DES versus DES based on a priori hypotheses. This exploratory project will thus build a foundation for future studies to rigorously test hippocampal-network support of memory behavioral performance using bi-directional experimental manipulations and will establish a collaboration of multidisciplinary researchers across multiple institutions to perform this innovative mechanistic memory research.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Age 18+ years old
  • Native English speakers
  • Normal or corrected-to-normal near and far vision

Treatment and study plan

TMS electrical stimulation parameters during cognitive and memory demands

Other

Study conditions will involve electrical stimulation delivered through non-invasive TMS. These different stimulation parameters will include the presence of stimulation (no stimulation versus stimulation) and the location of stimulation.

DES electrical stimulation parameters during cognitive and memory demands

Other

Study conditions will involve direct electrical stimulation delivered through implanted iEEG electrodes. These different stimulation parameters will include the presence of stimulation (no stimulation versus stimulation) and the location of stimulation across the same electrode or a different electrode.

Primary outcomes

  1. Power of theta-band hippocampal iEEG activity

    Time frame: Measured during the performance of the task while research activities are completed. Measurement will take 2 to 4 hours on a single day

    iEEG is used to measure local brain electrical activity evoked by task conditions. We will record and analyze the power of theta-band hippocampal iEEG activity

  2. iEEG activity between hippocampus and the stimulated electrode

    Time frame: Measured during the performance of the task while research activities are completed. Measurement will take 2 to 4 hours on a single day

    iEEG is used to measure local brain electrical activity evoked by task conditions. We will record and analyze the synchrony of iEEG activity between hippocampus and the stimulated electrode.

  3. Memory task performance

    Time frame: The memory task is administered before, during and/or after stimulation from transcranial magnetic stimulation (TMS) or direct electrical stimulation (DES). The memory task will take 2 to 4 hours in a single day.

    Subjects attempt to discriminate studied from novel (foil) scenes and object images

Sponsors and collaborators

Lead sponsor

University of Chicago

Other

Collaborators

  • Northwestern University
  • Washington University School of Medicine

Registry information

Important dates

Study start
2025
Primary completion
2028
Study completion
2028
First posted
Jan 30, 2026
Registry last updated
Jan 30, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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