Jaros U, Hilgenfeld B, Lau S, Curio G, Haueisen J
Biomagnetic Center, Department of Neurology, University Hospital Jena, Erlanger Allee 101, 07747 Jena, Germany.
Clin Neurophysiol. 2008 Nov;119(11):2647-57. doi: 10.1016/j.clinph.2008.08.011. Epub 2008 Oct 1.
The source of somatosensory evoked high-frequency activity at about 600 Hz is still not completely clear. Hence, we aimed to study the influence of double stimulation on the human somatosensory system by analyzing both the low-frequency activity and the high-frequency oscillations (HFOs) at about 600 Hz.
We used median nerve stimulation at seven interstimuli intervals (ISIs) with a high time resolution between 2.4 and 4.8 ms to investigate the N15, N20 and superimposed HFOs. Simultaneously, the electroencephalogram and the magnetoencephalogram of 12 healthy participants were recorded. Subsequently, the source analysis of precortical and cortical dipoles was performed.
The difference computations of precortical dipole activation curves showed in both the low- and high-frequency range a correlation between the ISI and the latency of the second stimulus response. The cortical low-frequency response showed a similar behavior. Contrarily, in the second response of cortical HFOs this latency shift could not be confirmed. We found amplitude fluctuations that were dependent on the ISI in the low-frequency activity and the HFOs. These nonlinear interactions occurred at ISIs, which differ by one full HFO period (1.6 ms).
Low-frequency activity and HFOs originate from different generators. Precortical and cortical HFOs are independently generated. The amplitude fluctuations dependent on ISI indicate nonlinear interference between successive stimuli.
Information processing in human somatosensory system includes nonlinearity.
约600Hz体感诱发电位高频活动的来源仍不完全清楚。因此,我们旨在通过分析低频活动和大约600Hz的高频振荡(HFOs)来研究双刺激对人体体感系统的影响。
我们采用正中神经刺激,刺激间隔(ISI)为7种,时间分辨率在2.4至4.8ms之间,以研究N15、N20和叠加的HFOs。同时,记录了12名健康参与者的脑电图和脑磁图。随后,进行了皮层下和皮层偶极子的源分析。
皮层下偶极子激活曲线的差异计算表明,在低频和高频范围内,ISI与第二个刺激反应的潜伏期之间存在相关性。皮层低频反应表现出类似的行为。相反,在皮层HFOs的第二个反应中,这种潜伏期变化无法得到证实。我们发现在低频活动和HFOs中,振幅波动取决于ISI。这些非线性相互作用发生在ISI,其相差一个完整的HFO周期(1.6ms)。
低频活动和HFOs起源于不同的发生器。皮层下和皮层HFOs是独立产生的。取决于ISI的振幅波动表明连续刺激之间存在非线性干扰。
人体体感系统中的信息处理包括非线性。