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Different Mode of Afferents Determines the Frequency Range of High Frequency Activities in the Human Brain: Direct Electrocorticographic Comparison between Peripheral Nerve and Direct Cortical Stimulation

机译:不同的传入模式决定了人脑中高频活动的频率范围:周围神经与直接皮层刺激之间的直接电皮层比较

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摘要

Physiological high frequency activities (HFA) are related to various brain functions. Factors, however, regulating its frequency have not been well elucidated in humans. To validate the hypothesis that different propagation modes (thalamo-cortical vs. cortico-coritcal projections), or different terminal layers (layer IV vs. layer II/III) affect its frequency, we, in the primary somatosensory cortex (SI), compared HFAs induced by median nerve stimulation with those induced by electrical stimulation of the cortex connecting to SI. We employed 6 patients who underwent chronic subdural electrode implantation for presurgical evaluation. We evaluated the HFA power values in reference to the baseline overriding N20 (earliest cortical response) and N80 (late response) of somatosensory evoked potentials (HFASEP(N20) and HFASEP(N80)) and compared those overriding N1 and N2 (first and second responses) of cortico-cortical evoked potentials (HFACCEP(N1) and HFACCEP(N2)). HFASEP(N20) showed the power peak in the frequency above 200 Hz, while HFACCEP(N1) had its power peak in the frequency below 200 Hz. Different propagation modes and/or different terminal layers seemed to determine HFA frequency. Since HFACCEP(N1) and HFA induced during various brain functions share a similar broadband profile of the power spectrum, cortico-coritcal horizontal propagation seems to represent common mode of neural transmission for processing these functions.
机译:生理高频活动(HFA)与各种脑功能有关。但是,在人类中尚不清楚调节其频率的因素。为了验证以下假设,即不同的传播模式(丘脑皮层与皮质皮层-皮层投影)或不同的终端层(IV层与II / III层)会影响其频率,我们比较了主要的体感皮层(SI)正中神经刺激诱发的HFA与电刺激连接至SI的皮质诱发的HFA。我们雇用了6例接受慢性硬膜下电极植入的患者进行术前评估。我们参照人体感应诱发电位(HFASEP(N20)和HFASEP(N80))的基线优先N20(最早的皮质反应)和N80(晚期反应)评估了HFA功率值,并比较了优先于N1和N2(第一和第二次)的HFA功率值皮层皮质诱发电位(HFACCEP(N1)和HFACCEP(N2))。 HFASEP(N20)在200 Hz以上的频率中显示功率峰值,而HFACCEP(N1)在200 Hz以下的频率中显示功率峰值。不同的传播模式和/或不同的终端层似乎决定了HFA频率。由于在各种脑功能中诱发的HFACCEP(N1)和HFA具有相似的功率谱宽带分布,因此皮质-皮质水平传播似乎代表了处理这些功能的神经传递的通用模式。

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