Temporal Interference Methods for Non-invasive Deep Brain Stimulation
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 30
- 试验地点
- 2
- 主要终点
- Change From Baseline (no Stimulation) in Brain Activity in the Nucleus Accumbens During Active Versus Sham Stimulation
研究概览
简要总结
In its totality, this grant aims to develop a line of research using temporal interference (TI) electrical neurostimulation technology to understand the causal role of deep brain structures in cognition. In the short term, the investigators aim to validate and characterize the effects of TI on brain activity as measured by fMRI and demonstrate its ability to focally stimulate deep brain regions without affecting overlying cortex. In the longer term, investigators aim to use these data to resolve longstanding debates about the function of deeper brain regions and lay the foundation for future clinical applications of TI for treating addiction, Obsessive-Compulsive Disorder (OCD), Parkinson's disease, and other disorders involving deep brain dysfunction. The grant supports 2 distinct aims, each of which will be evaluated through a series of independent studies.
详细描述
Through the grant's duration, the investigators hypothesize that temporal interference (TI) electrical neurostimulation will be well tolerated and effective at focally manipulating deep brain activity as measured by functional MRI (fMRI) BOLD signals. The investigators will investigate whether TI stimulation can increase BOLD activity in targeted deep brain regions including the nucleus accumbens (NAcc) and dorsal anterior cingulate cortex (dACC), and whether this stimulation can influence cognitive functions controlled by these regions. TI works by applying alternating currents of slightly different frequencies through multiple electrode pairs, creating an interference pattern that can stimulate deep brain regions without significantly affecting superficial cortical areas. This method is similar to traditional transcranial direct current stimulation (tDCS), however TI can stimulate deeper brain structures that tDCS cannot reach effectively. The study is broken up into two main aims with multiple sub-studies. In Aim 1, the investigators will characterize the effects of TI on fMRI BOLD signals, test different beat frequencies, and compare TI effects in the nucleus accumbens versus dorsal anterior cingulate cortex. In Aim 2, the investigators will apply TI to the dorsal anterior cingulate cortex to test causal theories about its role in cognitive control, conflict monitoring, risk avoidance, and foraging behavior using established cognitive tasks while subjects undergo fMRI scanning.
Study 1.1 (Aim 1, Study 1) will test the ability to focally activate the nucleus accumbens without activating the overlying cortex, and also its effects on functional connectivity. Healthy subjects (n=30) will present for a single study visit during which they will be placed in the fMRI scanner and administered a temporal interference protocol. Specifically, subjects will have two pairs of carbon fiber electrodes attached to the scalp with conductive gel. They will receive one 8-minute block of stimulation at 2mA per electrode pair. The stimulation sequence will be 2 minutes on, 2 minutes off, 2 minutes on, and 2 minutes off with 30 second ramp up and ramp down beginning at the start of each 2-minute period. The first block will apply active TI stimulation with 2000Hz in one channel and 2020Hz in the other channel. The second block will be a sham TI stimulation, identical to the first block but with the "on" condition immediately ramping down as soon as it reaches 2mA after ramp up. The third and fourth blocks will be identical to the first and second blocks, except that both electrode pairs will stimulate at 2000Hz, resulting in a "NO-TI active" and "NO-TI sham" conditions. The order of blocks, and whether the "on" or "off" condition occurs first within a block, will be counterbalanced across subjects.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Crossover
- 主要目的
- Basic Science
- 盲法
- Single (Participant)
入排标准
- 年龄范围
- 18 Years 至 50 Years(Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Between the ages of 18 and 50
- •Must have at least a 6th grade education
- •Ability to speak and read English for all phases
排除标准
- •Currently taking psychotropic medications for ADHD, other mental illness, or medications for cancer
- •History of epilepsy or seizure disorders
- •History of migraines or other neurological syndromes
- •History of AIDS (due to potential cognitive deficits)
- •History of head trauma or cognitive impairments
- •Personal experiences consistent with symptoms of psychosis (e.g., hallucinations, delusions of control or special powers)
- •History of skull defects (e.g., holes bored into the skull or known cranial fissures)
- •Metal implants in the head or under the scalp
- •Does not meet fMRI safety screening criteria (e.g., metal implants in the body, permanent jewelry, tattoos on the head or neck)
- •Uses an intrauterine device (IUD) for birth control and cannot provide documentation to verify MRI safety
- •Pregnancy (self-reported; no pregnancy test administered)
- •Weight over 440 lbs (scanner weight limit)
- •Presence of pacemakers
研究组 & 干预措施
NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Active (Device)
NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Sham (Device)
NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Active (Device)
NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Active, then NAcc TI Sham, then NAcc No-TI Active, then NAcc No-TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Sham (Device)
NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Sham (Device)
NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Active (Device)
NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Sham (Device)
NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Active, then NAcc No-TI Sham, then NAcc TI Active, then NAcc TI Sham.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Active (Device)
NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Active (Device)
NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Sham (Device)
NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Active (Device)
NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc TI Sham, then NAcc TI Active, then NAcc No-TI Sham, then NAcc No-TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Sham (Device)
NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Sham (Device)
NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Active (Device)
NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc TI Sham (Device)
NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active
Participants in this Arm receive temporal interference (TI) electrical stimulation with two pairs of carbon fiber electrodes in this order: NAcc No-TI Sham, then NAcc No-TI Active, then NAcc TI Sham, then NAcc TI Active.
干预措施: Temporal Interference (TI) Electrical Stimulation - NAcc No-TI Active (Device)
结局指标
主要结局
Change From Baseline (no Stimulation) in Brain Activity in the Nucleus Accumbens During Active Versus Sham Stimulation
时间窗: During fMRI scanning for each study session (active and sham stimulation), approximately 60 minutes
Brain activity in the nucleus accumbens was measured using functional magnetic resonance imaging (fMRI) during active temporal interference (TI) brain stimulation compared to sham stimulation. Activity change from baseline (no stimulation) was quantified using region-of-interest (ROI) beta estimates extracted from the nucleus accumbens. The beta estimates were derived from blood-oxygen-level-dependent (BOLD) signal changes measured during fMRI and reflect the magnitude of task-related neural activation within the ROI. Higher beta values indicate greater task-related activation. Whole-brain voxelwise analyses did not identify statistically significant activation clusters after correction for multiple comparisons; therefore, descriptive ROI-level beta estimates are reported.
次要结局
- Change From Baseline (no Stimulation) in Brain Activity in the Nucleus Accumbens During No-TI Active Versus No-TI Sham High-frequency Stimulation(During fMRI scanning for each study session (active and sham no-TI stimulation conditions), approximately 60 minutes)
- Change From Baseline (no Stimulation) in Brain Activity in the Nucleus Accumbens During Active TI Stimulation Versus Active No-TI Stimulation(During fMRI scanning for each study session (active TI and active no-TI stimulation conditions), approximately 60 minutes)
- Change in Brain Connectivity Between the Nucleus Accumbens and Other Brain Regions During Stimulation(During fMRI scanning for each study session (active and sham stimulation conditions), approximately 60 minutes)
研究者
Joshua Brown, PHD
Professor of Pyschological and Brain Science
Indiana University
