Rottmann Silke, Jung Kerstin, Ellrich Jens
Interdisciplinary Center for Clinical Research, RWTH Aachen University, Pauwelsstrasse 30, D-52074 Aachen, Germany.
Center for Sensory-Motor Interaction SMI, Department of Health Science and Technology, Medical Faculty, Aalborg University, Fredrik Bajers Vej 7D2, DK-9220 Aalborg, Denmark.
Clin Neurophysiol. 2008 Aug;119(8):1895-1904. doi: 10.1016/j.clinph.2008.02.022. Epub 2008 May 12.
Electrical low-frequency stimulation (LFS) of cutaneous afferents evokes long-term depression (LTD) of nociception. In vitro studies suggest a sole homosynaptic effect on the conditioned pathway. The present study addresses homotopy of LTD in human nociception and pain.
In 30 healthy volunteers, nociceptive Adelta fibers were electrically stimulated by a concentric electrode. Test stimulation (0.125 Hz) was alternately applied unilateral to radial and ulnar side of right hand dorsum (ExpUni) or bilateral to radial side of right and left hand dorsum (ExpBi). Conditioning LFS (1 Hz, 1,200 pulses) was applied to radial side of right hand dorsum. Somatosensory evoked cortical vertex potentials (SEP) were recorded, and volunteers rated stimulus intensity.
After homotopic LFS, SEP amplitude (ExpUni: -34.6%; ExpBi: -33.6%) and pain rating (ExpUni: -44.1%; ExpBi: -29.1%) significantly decreased. Amplitude reduction after heterotopic LFS did not differ from habituation effects in Control experiment without LFS. Heterotopic pain perception was not affected.
The electrophysiological and psychophysical study on synaptic plasticity in healthy man demonstrates homotopic organization of LTD.
Homotopy is probably due to a homosynaptic effect at first nociceptive synapse, but descending inhibitory systems may also be involved. These experiments may help to judge the potency of LTD for future therapy in chronic pain.
对皮肤传入神经进行低频电刺激(LFS)可诱发痛觉的长期抑制(LTD)。体外研究表明对条件通路存在单一的同突触效应。本研究探讨人类痛觉和疼痛中LTD的同位性。
在30名健康志愿者中,用同心电极对伤害性Aδ纤维进行电刺激。测试刺激(0.125Hz)交替单侧施加于右手背桡侧和尺侧(实验单)或双侧施加于右手背和左手背桡侧(实验双)。对右手背桡侧施加条件LFS(1Hz,1200个脉冲)。记录体感诱发电位皮质顶点电位(SEP),并让志愿者对刺激强度进行评分。
同位LFS后,SEP波幅(实验单:-34.6%;实验双:-33.6%)和疼痛评分(实验单:-44.1%;实验双:-29.1%)显著降低。异位LFS后的波幅降低与无LFS的对照实验中的习惯化效应无差异。异位痛觉未受影响。
对健康人突触可塑性的电生理和心理物理学研究证明了LTD的同位组织。
同位性可能首先是由于在第一个伤害性突触处的同突触效应,但下行抑制系统也可能参与其中。这些实验可能有助于判断LTD在慢性疼痛未来治疗中的效力。