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Inspiratory phase-locked alpha oscillation in human olfaction: source generators estimated by a dipole tracing method

机译:嗅觉中的吸气锁相α振荡:通过偶极子跟踪法估算的源发生器

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摘要

Olfactory perception and related emotions are largely dependent on inspiration. We acquired simultaneous respiration and electroencephalographic recordings during pleasant odour and unpleasant odour stimulation. We sought to identify changes in respiratory pattern, inspiratory-related potentials and location of dipoles estimated from the potentials. Electroencephalographic recording was triggered by inspiration onset. Respiratory frequency decreased at pleasant odour recognition, and it increased at unpleasant odour detection and recognition. O2 consumption records showed that these changes were not due to metabolic demand. During olfactory stimulation, inspiratory phase-locked alpha oscillation (I-α) was found in the averaged potential triggered by inspiration onset. I-α was observed at both pleasant odour and unpleasant odour detection and recognition, but it was not seen in the inspiration-triggered potentials of normal air breathing. Electroencephalographic dipole tracing identified the location of dipoles from the I-α in the limbic area and the cortex; the entorhinal cortex, hippocampus, amygdala, premotor area and centroposterior orbitofrontal cortex subserve odour detection, and the rostromedial orbitofrontal cortex subserves odour recognition. We suggest that the I-α in our study originated from the olfactory cortex in the forebrain and was phase-locked to inspiration.
机译:嗅觉和相关情绪在很大程度上取决于灵感。在令人愉快的气味和令人不愉快的气味刺激期间,我们同时获得了呼吸和脑电图记录。我们试图确定呼吸模式的变化,与吸气有关的电势以及根据电势估计的偶极子位置。脑电图记录是由吸气发作触发的。在令人愉快的气味识别中,呼吸频率降低,而在不愉快的气味检测和识别中,呼吸频率升高。氧气消耗量记录表明,这些变化不是由于代谢需求引起的。在嗅觉刺激过程中,在吸气发作触发的平均电位中发现了吸气锁相α振荡(I-α)。在令人愉悦的气味和难闻的气味检测和识别中都观察到了I-α,但在正常呼吸的吸气触发电位中却没有看到。脑电偶极子示踪法确定了I-α在边缘区和皮质中的偶极子位置;内嗅皮层,海马,杏仁核,运动前区和眶后额叶前额叶皮层具有气味检测功能,而延髓系眶额叶皮层则具有气味识别功能。我们建议我们的研究中的I-α起源于前脑的嗅觉皮层,并且与吸气有关。

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