Recruiting

TDCS

Sponsor:

Northeastern University

Code:

NCT04268186

Conditions

Motivation

Eligibility Criteria

Sex: All

Age: 65 - 70+

Healthy Volunteers: Accepted

Interventions

Direct tDCS

Indirect tDCS

Personalized tDCS

Sham tDCS

Study Details

Brief summary:

Fundamental advancements in understanding successful aging are limited by the lack of causal, rather than just correlational methods to connect age-related changes in memory ability to changes in brain structure and function. In this study, non-invasive electric brain stimulation will be used as a tool to create causal links between successful memory function in aging and brain structures associated with motivation. Recently, it was shown that a group of elderly, dubbed "superagers", are indistinguishable from young adults in memory performance and the structure of cortical limbic regions. A key superaging region is mid-cingulate cortex (MCC), a brain structure associated with motivation and tenacity. The MCC is a hub region that synchronizes information flow between three core brain networks. The goal of the research is to explore the contribution of motivation to memory performance by modulating MCC connectivity with transcranial direct current stimulation (tDCS) to provide the first causal evidence that experimentally induced motivation can improve memory performance. Since MCC has not been stimulated with tDCS before, we will test three different stimulation protocols and compare against a placebo. The stimulation protocols were computationally optimized for this project. The primary aim is to find the stimulation protocol most successful at improving memory performance. In order to elucidate the mechanisms behind these changes, effects of stimulation on motivation and network connectivity will be investigated. If indeed memory can be improved by increasing motivation and effort via stimulating MCC, this study will generate new insights into the motivational mechanisms of successful aging.

Conditions

Motivation

Study ID

NCT04268186

Start date

Jan 22, 2020

Status verified date

Feb, 2020

Completion date

Sep, 2020

Anticipated

Primary completion date

Sep, 2020

Anticipated

Eligibility Criteria

Eligibility Criteria

Sex: All

Age: 65 - 70+

Healthy Volunteers: Accepted

Inclusion Criteria:

  • between the ages of 65 and 80
  • normal or corrected to normal vision
  • fluent in speaking, reading and understanding English
  • right-handed

Exclusion Criteria:

  • any metal implants that may cause harm through MRI scanning
  • other metals that may interfere with obtaining MRI signals
  • claustrophobic
  • pregnancy
  • history of neurological or psychiatric illnesses
  • history of fainting, seizures or epilepsy
  • history of migraines
  • history of drug abuse
  • learning disability
  • intracranial lesion
  • any prescription or regular medication except for birth control
  • any uncontrolled medical condition
  • skin disease or damage on scalp
  • hair style or head dress that prevents electrode contact with the scalp
  • any condition affecting agility of hands (e.g. acute or chronic tenosynovitis, active joint deformity of arthritic origin)

Study Design

Enrollment

72 participants

Anticipated

Allocation

Randomized

Intervention Model

Parallel Assignment

Primary purpose

Basic Science

Interventions and Outcome Measures

Arms

experimental: Direct tDCS

Transcranial direct current stimulation (tDCS) was computationally optimized to target mid-cingulate cortex directly.

experimental: Indirect tDCS

Transcranial direct current stimulation (tDCS) was computationally optimized to target the middle frontal gyrus, a brain area connected to mid-cingulate cortex.

experimental: Personalized tDCS

Transcranial direct current stimulation (tDCS) will be individually optimized to simultaneously stimulate key nodes connected to mid-cingulate cortex, including anterior insula, MFG and supramarginal gyrus.

sham comparator: Sham tDCS

Placebo transcranial direct current stimulation (tDCS) will be applied.

Interventions

Direct tDCS

Transcranial direct current stimulation (tDCS) will be applied. Stimulation amplitude is 2 mA. Stimulation duration is 20 minutes. The configuration used is two electrodes at AFz and CPz of the 10-10 electrode system.

Indirect tDCS

Transcranial direct current stimulation (tDCS) will be applied. Stimulation amplitude is 2 mA. Stimulation duration is 20 minutes. The configuration used is two electrodes at AF3 and AF4 of the 10-10 electrode system.

Personalized tDCS

Transcranial direct current stimulation (tDCS) will be applied. Stimulation amplitude is 2 mA. Stimulation duration is 20 minutes. The configuration used will be optimized to stimulate key nodes connected to MCC, including anterior insula, MFG and supramarginal gyrus, and designed using an individual head model that will be combined with each subject's measured connectivity map. The number of electrodes will be minimally 2 and maximally 32.

Sham tDCS

Transcranial direct current stimulation (tDCS) will be applied. Stimulation amplitude is 2 mA. Stimulation duration is 20 minutes. Placebo stimulation will be applied by ramping the current up and immediately down over 30 seconds. The configuration used is two electrodes at AF3 and AF4 of the 10-10 electrode system.

Primary outcome measure

  • Change in "Feeling of difficulty" from baseline [ Time Frame: 1 week ]
  • Change in "Estimates of effort" from baseline [ Time Frame: 1 week ]
  • Change in "NASA Task Load Index" from baseline [ Time Frame: 1 week ]
  • Change in "Time to complete unsolvable anagrams" from baseline [ Time Frame: 1 week ]

Central Contacts and Locations

Central contacts

Sumientra M Rampersad, PhD

6173733880s.rampersad@northeastern.edu

Alexandra Touroutoglou, PhD

atourout@nmr.mgh.harvard.edu

Locations

Northeastern University

Recruiting

Boston, Massachusetts, United States, 02115

Contacts

More Information

Sponsor

Northeastern University

Last update posted

Feb 13, 2020

Last verified

Feb, 2020

Keywords

  • cognitive functioning
  • elderly
  • healthy
  • tDCS
  • motivation
  • memory
  • structural MRI
  • resting-state fMRI

Trial information was received from ClinicalTrials.gov and was last updated on 2026-09-10. This information was provided to ClinicalTrials.gov by Northeastern University on 2020-02-13.