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嗅觉神经反馈:当前状态与进一步发展的可能性

Olfactory neurofeedback: current state and possibilities for further development.

作者信息

Ninenko Ivan, Medvedeva Alexandra, Efimova Victoria L, Kleeva Daria F, Morozova Marina, Lebedev Mikhail A

机构信息

Institute for Cognitive Neuroscience, HSE University, Moscow, Russia.

Pedagogy Department, International University of Central Asia, Tokmok, Kyrgyzstan.

出版信息

Front Hum Neurosci. 2024 Nov 29;18:1419552. doi: 10.3389/fnhum.2024.1419552. eCollection 2024.

Abstract

This perspective considers the novel concept of olfactory neurofeedback (O-NFB) within the framework of brain-computer interfaces (BCIs), where olfactory stimuli are integrated in various BCI control loops. In particular, electroencephalography (EEG)-based O-NFB systems are capable of incorporating different components of complex olfactory processing - from simple discrimination tasks to using olfactory stimuli for rehabilitation of neurological disorders. In our own work, EEG theta and alpha rhythms were probed as control variables for O-NFB. Additionaly, we developed an olfactory-based instructed-delay task. We suggest that the unique functions of olfaction offer numerous medical and consumer applications where O-NFB is combined with sensory inputs of other modalities within a BCI framework to engage brain plasticity. We discuss the ways O-NFB could be implemented, including the integration of different types of olfactory displays in the experiment set-up and EEG features to be utilized. We emphasize the importance of synchronizing O-NFB with respiratory rhythms, which are known to influence EEG patterns and cognitive processing. Overall, we expect that O-NFB systems will contribute to both practical applications in the clinical world and the basic neuroscience of olfaction.

摘要

这一观点在脑机接口(BCI)的框架内考虑了嗅觉神经反馈(O-NFB)这一新颖概念,其中嗅觉刺激被整合到各种BCI控制回路中。特别是,基于脑电图(EEG)的O-NFB系统能够纳入复杂嗅觉处理的不同组成部分——从简单的辨别任务到利用嗅觉刺激治疗神经疾病。在我们自己的工作中,对EEG的θ波和α波节律作为O-NFB的控制变量进行了探究。此外,我们开发了一种基于嗅觉的指令延迟任务。我们认为,嗅觉的独特功能提供了众多医学和消费应用,在这些应用中,O-NFB与BCI框架内其他模态的感官输入相结合,以促进大脑可塑性。我们讨论了实施O-NFB的方法,包括在实验设置中整合不同类型的嗅觉显示器以及要利用的EEG特征。我们强调将O-NFB与呼吸节律同步的重要性,已知呼吸节律会影响EEG模式和认知处理。总体而言,我们预计O-NFB系统将有助于临床领域的实际应用以及嗅觉的基础神经科学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1489/11638239/39b4b65a4942/fnhum-18-1419552-g0001.jpg

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