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Oscillatory neuronal dynamics associated with manual acupuncture: a magnetoencephalography study using beamforming analysis

机译:与手动针灸相关的振荡神经元动力学:使用波束成形分析的脑磁图研究

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摘要

Magnetoencephalography (MEG) enables non-invasive recording of neuronal activity, with reconstruction methods providing estimates of underlying brain source locations and oscillatory dynamics from externally recorded neuromagnetic fields. The aim of our study was to use MEG to determine the effect of manual acupuncture on neuronal oscillatory dynamics. A major problem in MEG investigations of manual acupuncture is the absence of onset times for each needle manipulation. Given that beamforming (spatial filtering) analysis is not dependent upon stimulus-driven responses being phase-locked to stimulus onset, we postulated that beamforming could reveal source locations and induced changes in neuronal activity during manual acupuncture. In a beamformer analysis, a two-minute period of manual acupuncture needle manipulation delivered to the ipsilateral right LI-4 (Hegu) acupoint was contrasted with a two-minute baseline period. We considered oscillatory power changes in the theta (4–8 Hz), alpha (8–13 Hz), beta (13–30 Hz), and gamma (30–100 Hz) frequency bands. We found significant decreases in beta band power in the contralateral primary somatosensory cortex and superior frontal gyrus (SFG). In the ipsilateral cerebral hemisphere, we found significant power decreases in beta and gamma frequency bands in only the SFG. No significant power modulations were found in theta and alpha bands. Our results indicate that beamforming is a useful analytical tool to reconstruct underlying neuronal activity associated with manual acupuncture. Our main finding was of beta power decreases in primary somatosensory cortex and SFG, which opens up a line of future investigation regarding whether this contributes toward an underlying mechanism of acupuncture.
机译:磁脑电图(MEG)能够以非侵入性方式记录神经元活动,而重建方法可根据外部记录的神经磁场提供潜在的脑源位置和振荡动态的估计。我们研究的目的是使用MEG来确定手动针刺对神经元振荡动力学的影响。 MEG研究手动针灸的主要问题是每次针操作都没有开始时间。鉴于波束形成(空间滤波)分析不依赖于由刺激驱动的响应被相位锁定于刺激发作,因此我们假设波束形成可以揭示手动针刺过程中的源位置并引起神经元活动的变化。在波束形成器分析中,将两分钟的手动针灸针操作交付到同侧右LI-4(Hegu)穴位与两分钟的基线期进行了对比。我们考虑了theta(4–8 Hz),alpha(8–13 Hz),beta(13–30 Hz)和gamma(30–100 Hz)频带中的振荡功率变化。我们发现对侧初级体感皮层和上额额回(SFG)中的β带功率显着降低。在同侧大脑半球中,我们发现仅SFG中的β和γ频段功率显着降低。在θ和α频带中未发现明显的功率调制。我们的结果表明,波束成形是一种有用的分析工具,可用于重建与手动针灸相关的潜在神经元活动。我们的主要发现是,初级体感皮层和SFG中的β功率降低,这为今后是否有助于针刺的基础开辟了一条未来的研究路线。

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