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节段性和节段外条件刺激对疼痛性电刺激诱发的皮质电位的影响。

Influence of segmental and extra-segmental conditioning, stimuli on cortical potentials evoked by painful electrical stimulation.

作者信息

Watanabe I, Svensson P, Arendt-Nielsen L

机构信息

Laboratory for Experimental Pain Research, Center for Sensory-Motor Interaction, Aalborg University, Denmark.

出版信息

Somatosens Mot Res. 1999;16(3):243-50. doi: 10.1080/08990229970492.

Abstract

This study evaluated the effects of two different types of segmental/extra-segmental conditioning stimuli (tonic muscle pain and non-painful vibration) on the subjective experience (perceived pain intensity) and on the cortical evoked potentials to standardized test stimuli (cutaneous electrical stimuli). Twelve subjects participated in two separate sessions to investigate the effects of tonic muscle pain or cutaneous vibration on experimental test stimuli. The experimental protocol contained a baseline registration (test stimuli only), a registration with the test stimuli in combination with the conditioning stimuli, followed by a registration with the test stimuli only. In addition, the effects of the conditioning stimuli were examined at two anatomically separated locations (segmental and extra-segmental). Compared with the test stimulus alone, the perceived pain intensity and peak-to-peak amplitudes of the evoked potentials were unchanged in the presence of non-painful conditioning stimuli at either location. In contrast, a significant decrease of the perceived pain intensity and peak-to-peak amplitudes was found in the presence of painful conditioning stimuli at the extra-segmental sites. Moreover, the topographic maps of the 32-channel recordings suggested that the distribution of the scalp evoked potentials was almost symmetrical around the vertex Cz in the baseline registration. The evoked potentials were generally decreased during hypertonic saline infusion at the extra-segmental sites, but the distribution of the topographic maps did not appear to change. Vibration has previously been shown to inhibit pain, but in the present study the perceived intensity of phasic painful electrical stimuli was unchanged. The reduced perceived pain intensity and the smaller peak-to-peak amplitude of the evoked potential in the presence of extra-segmental conditioning pain are in accordance with the concept of diffuse noxious inhibitory control.

摘要

本研究评估了两种不同类型的节段性/节段外条件刺激(紧张性肌肉疼痛和非疼痛性振动)对主观体验(感知疼痛强度)以及对标准化测试刺激(皮肤电刺激)的皮质诱发电位的影响。12名受试者参加了两个独立的实验环节,以研究紧张性肌肉疼痛或皮肤振动对实验测试刺激的影响。实验方案包括一次基线记录(仅测试刺激)、一次测试刺激与条件刺激相结合的记录,随后是仅测试刺激的记录。此外,在两个解剖学上分离的位置(节段性和节段外)检查了条件刺激的影响。与单独的测试刺激相比,在任一位置存在非疼痛性条件刺激时,诱发电位的感知疼痛强度和峰峰值幅度均未改变。相反,在节段外部位存在疼痛性条件刺激时,发现感知疼痛强度和峰峰值幅度显著降低。此外,32通道记录的地形图表明,在基线记录中,头皮诱发电位在头顶Cz周围的分布几乎对称。在节段外部位输注高渗盐水期间,诱发电位总体上降低,但地形图的分布似乎没有变化。先前已证明振动可抑制疼痛,但在本研究中,相位性疼痛电刺激的感知强度未改变。节段外条件性疼痛存在时,感知疼痛强度降低以及诱发电位的峰峰值幅度减小,这与弥漫性有害抑制控制的概念相符。

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