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Towards semantic fMRI neurofeedback: navigating among mental states using real-time representational similarity analysis

机译:朝着语义FMRI神经反馈:使用实时代表性相似性分析在心理状态中导航

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摘要

Objective. Real-time functional magnetic resonance imaging neurofeedback (rt-fMRI-NF) is a non-invasive MRI procedure allowing examined participants to learn to self-regulate brain activity by performing mental tasks. A novel two-step rt-fMRI-NF procedure is proposed whereby the feedback display is updated in real-time based on high-level representations of experimental stimuli (e.g. objects to imagine) via real-time representational similarity analysis of multi-voxel patterns of brain activity. Approach. In a localizer session, the stimuli become associated with anchored points on a two-dimensional representational space where distances approximate between-pattern (dis)similarities. In the NF session, participants modulate their brain response, displayed as a movable point, to engage in a specific neural representation. The developed method pipeline is verified in a proof-of-concept rt-fMRI-NF study at 7 T involving a single healthy participant imagining concrete objects. Based on this data and artificial data sets with similar (simulated) spatio-temporal structure and variable (injected) signal and noise, the dependence on noise is systematically assessed. Main results. The participant in the proof-of-concept study exhibited robust activation patterns in the localizer session and managed to control the neural representation of a stimulus towards the selected target in the NF session. The offline analyses validated the rt-fMRI-NF results, showing that the rapid convergence to the target representation is noise-dependent. Significance. Our proof-of-concept study introduces a new NF method allowing the participant to navigate among different mental states. Compared to traditional NF designs (e.g. using a thermometer display to set the level of the neural signal), the proposed approach provides content-specific feedback to the participant and extra degrees of freedom to the experimenter enabling real-time control of the neural activity towards a target brain state without suggesting a specific mental strategy to the subject.
机译:客观的。实时功能磁共振成像神经融合(RT-FMRI-NF)是一种非侵入式MRI程序,允许检查参与者通过执行精神任务来学习自我调节脑活动。提出了一种新颖的两步RT-FMRI-NF程序,从而基于多体素图案的实时代表性相似性分析,基于实验刺激(例如对象)的高级表示,实时更新反馈显示大脑活动。方法。在本地化器会话中,刺激与在二维代表空间上的锚点相关联,其中距离模式(DIS)相似度近似。在NF会话中,参与者调节其脑响应,显示为可移动点,以从事特定的神经表示。开发方法管道在概念验证的RT-FMRI-NF研究中验证,涉及一个涉及想象混凝土物体的单个健康参与者的7 T.基于具有相似(模拟)时空结构和变量(注入)信号和噪声的数据和人工数据集,系统地评估了对噪声的依赖性。主要结果。概念证明研究的参与者在本地化器会话中表现出鲁棒的激活模式,并设法控制在NF会话中朝向所选目标的刺激的神经表示。离线分析验证了RT-FMRI-NF结果,表明目标表示的快速收敛是噪声依赖性的。意义。我们的概念证明研究介绍了一种新的NF方法,允许参与者在不同的心理状态中导航。与传统的NF设计相比(例如,使用温度计显示设定神经信号的水平),所提出的方法为参与者提供了特定于内容的反馈和实验者的额外自由度,从而实现了对神经活动的实时控制目标脑状态,而不向主题提出具体的精神策略。

著录项

  • 来源
    《Journal of neural engineering 》 |2021年第4期| 046015.1-046015.14| 共14页
  • 作者单位

    Department of Political and Communication Sciences University of Salerno Fisciano(Salerno) Italy Department of Medicine Surgery and Dentistry Scuola Medica Salernitana University of Salerno Baronissi(Salerno) Italy;

    Department of Cognitive Neuroscience University of Maastricht Maastricht The Netherlands Brain Innovation B.V. Maastricht The Netherlands;

    Department of Medicine Surgery and Dentistry Scuola Medica Salernitana University of Salerno Baronissi(Salerno) Italy;

    Department of Medicine Surgery and Dentistry Scuola Medica Salernitana University of Salerno Baronissi(Salerno) Italy Department of Cognitive Neuroscience University of Maastricht Maastricht The Netherlands Department of Advanced Medical and Surgical Sciences University of Campania'Luigi Vanvitelli' Napoli Italy;

    Department of Cognitive Neuroscience University of Maastricht Maastricht The Netherlands Brain Innovation B.V. Maastricht The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    neurofeedback; representational similarity; real-time fMRI; semantic representation;

    机译:neurofeedback;代表性相似;实时FMRI;语义表示;
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