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首页> 外文期刊>Brain research >Correspondence between short-latency somatosensory evoked brain potentials and cortical magnetic fields following median nerve stimulation.
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Correspondence between short-latency somatosensory evoked brain potentials and cortical magnetic fields following median nerve stimulation.

机译:正中神经刺激后短时体感诱发脑电势与皮质磁场之间的对应关系。

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We investigated the somatosensory evoked cortical magnetic field (SEF) components corresponding to the somatosensory evoked potential (SEP) components between 20 and 30 ms after median nerve stimulation. SEP and SEF were simultaneously recorded after right median nerve stimulation in seven healthy subjects. Twenty single-sweep epochs of SEF and SEP were selected, in which the first SEF component at 20 ms, 1M, and the second component at 30 ms, 2M, were identifiable. The selected epochs were re-averaged at the peaks of 1M and 2M as the triggering periods (zero ms). The width of the deflection, the temporal dispersion (TD), of SEP components, P20 and N30 (Fz-A2), N20, cP25 and cN30 (C3-Fz), N20 and pP30 (P3-A2), and N20 and P30 (P3-Fz), were compared between three averaging conditions. The N20/P20 components showed significantly smaller TDs when the epochs were averaged at the 1M peak (one-way factorial ANOVA, P<0.02) than those of the control, but averaging at the 1M peak did not decrease the TD of N30/P30. On averaging at the 2M peak, the TDs of N30/P30 components recorded from Fz-A2 and P3-Fz were smaller than those of the control. Neither the averaging at the 1M peak nor that at the 2M peak decreased the TD of the cP25 and cN30 components. Source analysis showed that the equivalent current dipoles (ECDs) for both 1M and 2M were located around the central sulcus, possibly in the primary somatosensory cortex (SI). We confirmed that the 1M and 2M temporally linked with N20/P20 and N30/P30, respectively. The difference of TD of N20/P20 and N30/P30 indicated that the neural pathways to the responses to N20/P20 and N30/P30 might be independent.
机译:我们调查了正中神经刺激后20到30 ms之间的体感诱发皮层磁场(SEF)组件与体感诱发电位(SEP)组件相对应。在7位健康受试者的右正中神经刺激后同时记录SEP和SEF。选择了SEF和SEP的20个单扫描时期,其中可识别20 ms(1M)处的第一个SEF分量和30ms(2M)处的第二个SEF分量。将选定的时期在1M和2M的峰值处重新平均作为触发周期(零毫秒)。 SEP组件,P20和N30(Fz-A2),N20,cP25和cN30(C3-Fz),N20和pP30(P3-A2)以及N20和P30的偏转宽度,时间色散(TD) (P3-Fz)在三个平均条件之间进行了比较。当在1M峰处平均历时(单向因子方差分析,P <0.02)时,N20 / P20组分的TD显着小于对照,但在1M峰处平均不会降低N30 / P30的TD。 。在平均2M峰时,从Fz-A2和P3-Fz记录的N30 / P30组分的TD小于对照的TD。 1M峰的平均值和2M峰的平均值均不会降低cP25和cN30组分的TD。来源分析表明,1M和2M的等效电流偶极(ECD)都位于中央沟周围,可能位于初级体感皮层(SI)中。我们确认1M和2M分别在时间上与N20 / P20和N30 / P30相关。 N20 / P20和N30 / P30的TD差异表明,神经通路对N20 / P20和N30 / P30的反应可能是独立的。

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