跳至主要内容
临床试验/NCT05412901
NCT05412901暂停不适用

Scaffolding of Brain Operations: the Role of Beta Oscillations in Forming Flexible Neural Ensembles

New York State Psychiatric Institute1 个研究点 分布在 1 个国家目标入组 170 人开始时间: 2022年4月10日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
暂停
入组人数
170
试验地点
1
主要终点
EEG spectral beta power

研究概览

简要总结

Brain activity will be recorded while participants rest and/or perform perceptual discrimination tasks. These tasks include the presentation of sensory stimuli and require participants to detect and discriminate these stimuli, and to report about the objective properties of the stimuli as well as about their subjective perceptual experience using ratings of confidence, visibility, and/or alertness/sleepiness. All sensory stimuli used are neutral and consist of visual stimuli presented on a computer screen (either basic visual stimuli, e.g. an arrow, a grating or a dot, or neutral pictures of e.g. objects, buildings, landscapes), or auditory stimuli presented via headphones (either basic sounds, e.g. a beep or noise, or more complex sounds, e.g. a spoken word or rhythm). The experimental tasks may require participants to compare between sensory stimuli presented at different spatial locations or at different times, and/or to focus their attention on specific stimuli while suppressing distracting information; additionally, tasks may require participants to remember these stimuli for a delayed report. In these tasks, participants' performance will be quantified by motor responses (i.e., button press), reaction times and subjective ratings (confidence, visibility, alertness/sleepiness).

Brain activity will be recorded by means of electroencephalography (EEG), a non-invasive technique consisting of electrodes placed along the scalp that record electrical field potentials generated by cortical neurons. EEG will be used to record brain activity prior to and in response to the sensory stimuli presented during the cognitive and perceptual tasks as well as during the participants' responses. Additionally, EEG may be used to record brain activity during a baseline resting state, while participants are not engaged in any particular tasks. In particular, the analysis of the EEG signal will focus on event-related brain activity (i.e., in response to the stimuli) such as event-related potentials (ERP), as well as ongoing and spontaneous and/or induced brain activity quantified as oscillations: wave-like signal fluctuations reflecting rhythmic variations of membrane potentials of cortical neurons. In addition, the investigators will use MRI to take an anatomical image of the brain to facilitate localizing the sources of the activity measured with EEG.

详细描述

The brain constantly makes decisions based on perceptual input as well as internal signals, quickly weighing and processing information, leading to goal-directed behavior. One key aspect crucial to all these processes is communication the transfer of information from one brain network to the next. However, we are only beginning to understand how the brain accomplishes this. Here, the investigators propose to study exactly this question. The overarching goal of this project is to elucidate how the brain sets up the functional neural architecture involved in working memory and decision-making. The investigators argue that brain oscillations in the beta frequency band 1530 Hz play a critical role in forming flexible neural ensembles. The investigators propose a novel theoretical framework, delineating how the beta rhythm flexibly sets up transient networks, linking neuronal circuits that are relevant to current task demands, especially in terms of endogenous information processing e.g., working memory, decision-making. In this view, beta provides the scaffolding for information transfer,routing information through the brain by temporarily connecting relevant nodes such that exchange of information can take place. The investigators propose that the beta rhythm briefly activates a neural ensemble, allowing it to broadcast its message encoded in population spike activity such that it can be efficiently and effectively received. To test this framework, the aim here is to (1) examine the role of beta oscillations in dynamic neural ensemble formation and its relation to behavioral performance, (2) identify the underlying circuit-level physiology of beta-mediated ensemble formation, and (3) establish the generality of beta-mediated ensemble formation and identify non-invasive biomarkers. The investigators will use a combination of EEG recordings in healthy human subjects, and intracranial electrophysiology and optogenetic neuromodulation in awake-behaving rodents. Both human subjects and animals will perform a spatial working-memory paradigm, critically allowing vertical integration across recording levels. Human subjects will additionally perform working-memory tasks in different sensory modalities and at higher levels of abstraction to guarantee generalizability of results, and to allow for identification of biomarkers to be used in future patient studies. This approach is designed to answer core mechanistic questions how are local ensembles formed and how are these modulated Critically, the investigators will determine the effect of these mechanisms on behavior. The project will provide fundamental insights that will set the stage for further detailed investigations in healthy human subjects and patients with impaired beta functioning and cognitive impairment, such as in Parkinson's disease and schizophrenia.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
None

入排标准

年龄范围
18 Years 至 50 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • English speaking
  • Normal (or corrected-to-normal) vision, normal hearing

排除标准

  • Epilepsy, past brain surgery, neurological or psychiatric disorders for which they are on medication

研究组 & 干预措施

Visual spatial discrimination task with temporal manipulation

Other

exp 1.2

干预措施: discrimination task (Other)

Visual spatial discrimination task

Other

exp 1.1

干预措施: discrimination task (Other)

Crossmodal discrimination task

Other

exp 3.1

干预措施: discrimination task (Other)

Visual rule-switching discrimination task [gratings]

Other

exp 3.2

干预措施: discrimination task (Other)

Visual rule-switching discrimination task [images]

Other

exp 3.3

干预措施: discrimination task (Other)

结局指标

主要结局

EEG spectral beta power

时间窗: during procedure

Brain activity will be recorded using 96-channel EEG (BrainVision actiCHamp system, Brain Products). Spectral analysis will be performed using the Matlab-based FieldTrip toolbox, a standard in the field. For all spectral analyses, subject-specific peak frequencies will be estimated to tailor the approach. Beta power will be assessed in a band centered at the individual peak frequency.

次要结局

  • behavioral performance: accuracy(during procedure)
  • behavioral performance: reaction time(during procedure)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Saskia Haegens

Assistant Professor of Clinical Neuroscience

New York State Psychiatric Institute

研究点 (1)

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