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基于经颅磁刺激的心理手指个体化神经反馈训练可诱导感觉运动系统的神经可塑性变化。

TMS-Based Neurofeedback Training of Mental Finger Individuation Induces Neuroplastic Changes in the Sensorimotor System.

作者信息

Odermatt Ingrid Angela, Schulthess-Lutz Manuel, Mihelj Ernest, Howell Paige, Heimhofer Caroline, McMackin Roisin, Ruddy Kathy, Freund Patrick, Kikkert Sanne, Wenderoth Nicole

机构信息

Neural Control of Movement Laboratory, Department of Health Sciences and Technology, ETH Zurich, Zurich 8092, Switzerland

Neuroscience Center Zurich (ZNZ), University of Zurich and ETH Zurich, Zurich 8057, Switzerland.

出版信息

J Neurosci. 2025 Aug 27;45(35):e2189242025. doi: 10.1523/JNEUROSCI.2189-24.2025.

Abstract

Neurofeedback (NF) training based on motor imagery is increasingly used in neurorehabilitation with the aim to improve motor functions. However, the neuroplastic changes underpinning these improvements are poorly understood. Here, we used mental "finger individuation," i.e., the selective facilitation of single finger representations without producing overt movements, as a model to study neuroplasticity induced by NF. To enhance mental finger individuation, we used transcranial magnetic stimulation (TMS)-based NF training. During motor imagery of individual finger movements, healthy female and male human participants were provided visual feedback on the size of motor evoked potentials, reflecting their finger-specific corticospinal excitability. We found that TMS-NF improved the mental activation of finger-specific representations. First, intracortical inhibitory circuits in the primary motor cortex were tuned after training such that inhibition was selectively reduced for the finger that was mentally activated. Second, motor imagery finger representations in areas of the sensorimotor system assessed with functional MRI became more distinct after training. Together, our results indicate that the neural underpinnings of finger individuation, a well-known model system for neuroplasticity, can be modified using TMS-NF guided motor imagery training. These findings demonstrate that TMS-NF induces neuroplasticity in the sensorimotor system, highlighting the promise of TMS-NF on the recovery of fine motor function.

摘要

基于运动想象的神经反馈(NF)训练在神经康复中的应用越来越广泛,旨在改善运动功能。然而,这些改善背后的神经可塑性变化却鲜为人知。在此,我们使用心理“手指个体化”,即选择性促进单个手指表征而不产生明显运动,作为研究NF诱导的神经可塑性的模型。为增强心理手指个体化,我们使用基于经颅磁刺激(TMS)的NF训练。在个体手指运动的运动想象过程中,健康的女性和男性参与者会收到关于运动诱发电位大小的视觉反馈,反映其手指特异性皮质脊髓兴奋性。我们发现TMS-NF改善了手指特异性表征的心理激活。首先,训练后初级运动皮层中的皮质内抑制回路得到调整,使得对心理激活手指的抑制选择性降低。其次,经功能磁共振成像评估的感觉运动系统区域中的运动想象手指表征在训练后变得更加清晰。总之,我们的结果表明,手指个体化(一种著名的神经可塑性模型系统)的神经基础可以通过TMS-NF引导的运动想象训练来改变。这些发现表明TMS-NF在感觉运动系统中诱导神经可塑性,突出了TMS-NF对精细运动功能恢复的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bcc/12392065/092bb82cc61b/jneuro-45-e2189242025-g001.jpg

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