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Modulation of somatosensory evoked magnetic fields by intensity of interfering stimuli in human somatosensory cortex: An MEG study

机译:人体体感皮层中干扰刺激强度对体感诱发磁场的调制:MEG研究

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Somatosensory evoked responses are known to be modulated by previous interfering stimuli. Here, we first investigated the modulatory effects of interfering stimuli with different intensities on somatosensory evoked magnetic field in human primary (S1) and secondary (S2) somatosensory cortices. In the control condition of the study, test stimulus, set to strong intensity, was delivered to the left median nerve. Interfering stimuli with three different levels of intensity from weak (WI) through moderate (MI) and finally to strong (SI) were interspersed to the left median nerve between the test stimuli in each interfering condition. The cortical responses to the test stimulus were modeled with equivalent current dipoles in the contralateral S1 and bilateral S2 cortices from 17 subjects. The amplitude of the N20m deflection from the S1 was not changed by any interfering stimuli, whereas the amplitude of later P35m deflection was reduced by MI stimulus. The amplitude of P60m deflection was reduced by MI and SI stimuli. The extent of amplitude reduction of the bilateral S2 response was markedly increased as intensity of interfering stimuli increased from weak to moderate, but further reduction by the SI stimuli compared to MI stimuli was not observed. Those results indicated that somatosensory cortical activation in the S1 (P35m and P60m) and S2 were modulated by intensity of interfering stimuli. Our findings of a greater gating effect on the bilateral S2 compared to the contralateral S1 indicate that S2 may play an important role in temporal integration of different intensity levels of somatosensory inputs.
机译:已知体感诱发反应是由先前的干扰刺激调节的。在这里,我们首先研究了不同强度的干扰刺激对人初级(S1)和次级(S2)体感皮质中体感诱发磁场的调节作用。在研究的对照条件下,将设置为强强度的测试刺激传递到左中神经。在每种干扰条件下,从弱(WI)到中度(MI)到最后到强(SI)具有三种不同强度级别的干扰刺激散布到测试刺激之间的左中神经。皮层对测试刺激的反应是用来自17个受试者的对侧S1和双侧S2皮质中的等效电流偶极子模拟的。相对于S1的N20m偏转的幅度不会因任何干扰刺激而改变,而后来的P35m偏转的幅度会受到MI刺激的影响而降低。 MI和SI刺激降低了P60m偏转的幅度。随着干扰刺激强度从弱到中等的增加,双侧S2反应幅度降低的幅度明显增加,但是与MI刺激相比,没有观察到SI刺激进一步降低。这些结果表明,S1(P35m和P60m)和S2中的体感皮质激活受干扰刺激强度的调节。我们的研究发现,与对侧S1相比,双侧S2对门控S2的门控作用更大,这表明S2在体感输入的不同强度水平的时间整合中可能起重要作用。

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