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衰老过程中通过超低频神经反馈增强脑连接性:一项初步研究。

Enhancing Brain Connectivity With Infra-Low Frequency Neurofeedback During Aging: A Pilot Study.

作者信息

Dobrushina Olga R, Dobrynina Larisa A, Arina Galina A, Kremneva Elena I, Novikova Evgenia S, Gubanova Mariia V, Pechenkova Ekaterina V, Suslina Anastasia D, Aristova Vlada V, Trubitsyna Viktoriya V, Krotenkova Marina V

机构信息

Third Neurological Department, Research Center of Neurology, Moscow, Russia.

Faculty of Psychology, M.V. Lomonosov Moscow State University, Moscow, Russia.

出版信息

Front Hum Neurosci. 2022 May 30;16:891547. doi: 10.3389/fnhum.2022.891547. eCollection 2022.

Abstract

Aging is associated with decreased functional connectivity in the main brain networks, which can underlie changes in cognitive and emotional processing. Neurofeedback is a promising non-pharmacological approach for the enhancement of brain connectivity. Previously, we showed that a single session of infra-low frequency neurofeedback results in increased connectivity between sensory processing networks in healthy young adults. In the current pilot study, we aimed to evaluate the possibility of enhancing brain connectivity during aging with the use of infra-low frequency neurofeedback. Nine females aged 52 ± 7 years with subclinical signs of emotional dysregulation, including anxiety, mild depression, and somatoform symptoms, underwent 15 sessions of training. A resting-state functional MRI scan was acquired before and after the training. A hypothesis-free intrinsic connectivity analysis showed increased connectivity in regions in the bilateral temporal fusiform cortex, right supplementary motor area, left amygdala, left temporal pole, and cerebellum. Next, a seed-to-voxel analysis for the revealed regions was performed using the post- vs. pre-neurofeedback contrast. Finally, to explore the whole network of neurofeedback-related connectivity changes, the regions revealed by the intrinsic connectivity and seed-to-voxel analyses were entered into a network-based statistical analysis. An extended network was revealed, including the temporal and occipital fusiform cortex, multiple areas from the visual cortex, the right posterior superior temporal sulcus, the amygdala, the temporal poles, the superior parietal lobule, and the supplementary motor cortex. Clinically, decreases in alexithymia, depression, and anxiety levels were observed. Thus, infra-low frequency neurofeedback appears to be a promising method for enhancing brain connectivity during aging, and subsequent sham-controlled studies utilizing larger samples are feasible.

摘要

衰老与大脑主要网络中功能连接性的降低有关,这可能是认知和情绪处理变化的基础。神经反馈是一种有前景的非药物方法,可增强大脑连接性。此前,我们发现单次极低频神经反馈可增加健康年轻成年人感觉处理网络之间的连接性。在当前的试点研究中,我们旨在评估使用极低频神经反馈增强衰老过程中大脑连接性的可能性。九名年龄在52±7岁、有情绪调节障碍亚临床症状(包括焦虑、轻度抑郁和躯体形式症状)的女性接受了15次训练。在训练前后进行了静息态功能磁共振成像扫描。一项无假设的内在连接性分析显示,双侧颞梭状回皮质、右侧辅助运动区、左侧杏仁核、左侧颞极和小脑区域的连接性增加。接下来,使用神经反馈后与神经反馈前的对比,对所揭示区域进行种子点到体素分析。最后,为了探索与神经反馈相关的连接性变化的整个网络,将内在连接性和种子点到体素分析所揭示的区域纳入基于网络的统计分析。揭示了一个扩展网络,包括颞叶和枕叶梭状回皮质、视觉皮质的多个区域、右侧后颞上沟、杏仁核、颞极、顶上小叶和辅助运动皮质。临床上,观察到述情障碍、抑郁和焦虑水平有所下降。因此,极低频神经反馈似乎是一种在衰老过程中增强大脑连接性的有前景的方法,后续利用更大样本的假对照研究是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38e9/9195620/c7ec902f1fe9/fnhum-16-891547-g0001.jpg

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