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听觉顶点反应及其磁对应物的刺激间隔依赖性:对其神经产生的影响。

Interstimulus interval dependence of the auditory vertex response and its magnetic counterpart: implications for their neural generation.

作者信息

Hari R, Kaila K, Katila T, Tuomisto T, Varpula T

出版信息

Electroencephalogr Clin Neurophysiol. 1982 Nov;54(5):561-9. doi: 10.1016/0013-4694(82)90041-4.

Abstract

Auditory vertex responses elicited by short tone bursts were compared with their magnetic counter parts. Special attention was paid to the behaviour of the N100 deflection of the response. Electrical responses were recorded from scalp locations Fp2, Fz, Cz, Pz, C4 and T4 and the magnetic responses half way between P4 and T6, at a point where the response has one of its amplitude extrema. Different ISIs (from 1 to 16 sec) were applied in order to differentiate specific and nonspecific evoked potential components from each other. The main results were as follows: (1) The scalp distsribution of the electical vertex response depends on the ISI used: with frequent stimulation there are no marked differences in the amplitudes of N100 between frontal and central areas but with long ISIs the amplitude maxima move to the vertex. (2) The magnetic responses also show a clear ISI dependence. The magnetic counterpart of N100 saturates at shorter ISIs than N100 recorded from the vertex. Independent of the ISI the magnetic counterpart of P200 is constantly very small. On the basis of the different sensitivities of the EEG and MEG to current sources of different orientations it is concluded that the auditory vertex response contains both modality specific and non-specific components. Experimental conditions, especially the ISI used, determine the relative contributions of these components to the potential recorded on the scalp.

摘要

将短音突发诱发的听觉顶点反应与其磁对应物进行了比较。特别关注了反应中N100偏转的行为。从头皮位置Fp2、Fz、Cz、Pz、C4和T4记录电反应,从P4和T6之间的中点记录磁反应,该点处反应具有振幅极值之一。应用不同的刺激间隔(从1到16秒)以区分特定和非特定诱发电位成分。主要结果如下:(1)电顶点反应的头皮分布取决于所使用的刺激间隔:频繁刺激时,额叶和中央区域之间N100的振幅没有明显差异,但刺激间隔长时,振幅最大值移至顶点。(2)磁反应也显示出明显的刺激间隔依赖性。N100的磁对应物在比从顶点记录的N100更短的刺激间隔下饱和。与刺激间隔无关,P200的磁对应物始终非常小。基于脑电图(EEG)和脑磁图(MEG)对不同方向电流源的不同敏感性,得出听觉顶点反应包含模态特异性和非特异性成分的结论。实验条件,尤其是所使用的刺激间隔,决定了这些成分对头皮记录电位的相对贡献。

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