Waberski T D, Lamberty K, Dieckhöfer A, Buchner H, Gobbelé R
Department of Neurology, University Hospital Aachen, Pauwelsstr. 30, RWTH Aachen, D-52057 Aachen, Germany.
Neurosci Lett. 2008 Apr 18;435(2):137-41. doi: 10.1016/j.neulet.2008.02.020. Epub 2008 Feb 16.
We studied the modulation of the topographic arrangement of the human ipsilateral primary somatosensory cortex following interference of nociceptive stimuli by means of dipole source analysis. Multichannel somatosensory evoked potentials were obtained by electrical stimulation of digits 1 and 5 of the left hand before, during and after the application of pain to digits 2-4 of the right hand. The primary cortical response of the SEP (N20) was obtained for dipole localization of the representation of the primary sensory cortex receiving input from digits 1 to 5. The 3D-distance between these sides was calculated for further analysis. To account for possible attentional effects recordings were performed while simultaneously to this intervention subjects were asked to turn their attention to the right or left hand in a pseudorandom order. The application of pain induced an expansion of the 3D-distance between digits 1 and 5. Focusing attention to the stimulated limb or the site of the intervention did not yield to an additional effect. Our results provide further evidence for the presence of a quickly adapting interaction between primary somatosensory areas of both hemispheres following an interference of nociceptive stimulation in SEPs. This modifying process is probably mediated by interhemispheric and intercortical connections leading to hyperexcitability of the primary sensory cortex contralateral to that receiving nociceptive input. Spatial attention does not seem to have an impact on this kind of short-term intercortical plasticity.
我们通过偶极子源分析研究了伤害性刺激干扰后人类同侧初级体感皮层地形排列的调制。在对右手的第2 - 4指施加疼痛之前、期间和之后,通过电刺激左手的第1指和第5指获得多通道体感诱发电位。对于从第1指到第5指接收输入的初级感觉皮层表征的偶极子定位,获得了SEP的初级皮层反应(N20)。计算这些部位之间的三维距离以进行进一步分析。为了考虑可能的注意力效应,在进行此干预的同时,要求受试者以伪随机顺序将注意力转向右手或左手,并进行记录。疼痛的施加导致第1指和第5指之间的三维距离扩大。将注意力集中在受刺激的肢体或干预部位并没有产生额外的效果。我们的结果为在SEP中伤害性刺激干扰后两个半球的初级体感区域之间存在快速适应性相互作用提供了进一步的证据。这种改变过程可能是由半球间和皮质间连接介导的,导致与接受伤害性输入的对侧初级感觉皮层兴奋性增强。空间注意力似乎对这种短期皮质间可塑性没有影响。