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运动想象和触觉想象的血液动力学差异反应:多通道功能近红外光谱成像的研究结果。

Differential Hemodynamic Responses to Motor and Tactile Imagery: Insights from Multichannel fNIRS Mapping.

机构信息

Department of Human and Animal Physiology, Faculty of Biology, Lomonosov Moscow State University, Leninskie gory, 1, building 12, Moscow, 119234, Russia.

Baltic Center for Neurotechnology and Artificial Intelligence, Immanuel Kant Baltic Federal University, Alexander Nevsky Street, 14, Kaliningrad, 236041, Russia.

出版信息

Brain Topogr. 2024 Oct 4;38(1):4. doi: 10.1007/s10548-024-01075-x.

Abstract

Tactile and motor imagery are crucial components of sensorimotor functioning and cognitive neuroscience research, yet the neural mechanisms of tactile imagery remain underexplored compared to motor imagery. This study employs multichannel functional near-infrared spectroscopy (fNIRS) combined with image reconstruction techniques to investigate the neural hemodynamics associated with tactile (TI) and motor imagery (MI). In a study of 15 healthy participants, we found that MI elicited significantly greater hemodynamic responses (HRs) in the precentral area compared to TI, suggesting the involvement of different cortical areas involved in two different types of sensorimotor mental imagery. Concurrently, the HRs in S1 and parietal areas exhibited comparable patterns in both TI and MI. During MI, both motor and somatosensory areas demonstrated comparable HRs. However, in TI, somatosensory activation was observed to be more pronounced. Our results highlight the distinctive neural profiles of motor versus tactile imagery and indicate fNIRS technique to be sensitive for this. This distinction is significant for fundamental understanding of sensorimotor integration and for developing advanced neurotechnologies, including imagery-based brain-computer interfaces (BCIs) that can differentiate between different types of mental imagery.

摘要

触觉和运动想象是感觉运动功能和认知神经科学研究的重要组成部分,但与运动想象相比,触觉想象的神经机制仍未得到充分探索。本研究采用多通道近红外光谱(fNIRS)结合图像重建技术,研究与触觉(TI)和运动想象(MI)相关的神经血液动力学。在一项对 15 名健康参与者的研究中,我们发现 MI 在中央前区引起的血液动力学反应(HR)明显大于 TI,这表明不同的皮层区域参与了两种不同类型的感觉运动心理意象。同时,TI 和 MI 中 S1 和顶叶区域的 HR 表现出相似的模式。在 MI 期间,运动和感觉区域都表现出相似的 HR。然而,在 TI 中,感觉激活被观察到更为明显。我们的结果突出了运动与触觉想象的独特神经特征,并表明 fNIRS 技术对此敏感。这种区别对于理解感觉运动整合以及开发先进的神经技术(包括基于想象的脑机接口(BCI))具有重要意义,这些技术可以区分不同类型的心理想象。

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