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低频条件性电刺激后伤害性撤回反射的长期易化:人类中枢敏化的新模型。

Long-term facilitation of nociceptive withdrawal reflexes following low-frequency conditioning electrical stimulation: a new model for central sensitization in humans.

机构信息

Center for Sensory-Motor Interaction, Aalborg University, Aalborg Øst, Denmark.

出版信息

Eur J Pain. 2010 Sep;14(8):822-31. doi: 10.1016/j.ejpain.2009.12.008. Epub 2010 Jan 27.

Abstract

Central sensitization is believed to be one of the key mechanisms behind chronic pain conditions, and several models have been developed in order to characterize this phenomenon in humans. One of these models relies on conditioning electrical stimulation to elicit long-lasting effects on the nociceptive system. The aim of this study was to evaluate these effects using an objective electrophysiological measurement, the nociceptive withdrawal reflex (NWR). Long-term changes in spinal nociception after high- and low-frequency conditioning electrical stimulation were assessed in 13 healthy volunteers. Perceptual intensity ratings to mechanical stimuli and blood flow variations were assessed in the conditioned area (dorsum of the foot) and surroundings. To evaluate the excitability of the nociceptive system, the NWR was elicited within the same innervation area (superficial peroneal nerve) at graded stimulation intensities and recorded in the hamstrings. Following low-frequency stimulation, an intensity-independent long-lasting facilitation of the NWR was observed, with a significant increase in the reflex size (average of 31+/-4%, p<0.001) and in the number of reflexes (average increase of 22+/-10%, p<0.01), accompanied by a significant increase in the blood flow (average increase of 40+/-10%, p<0.001). These findings suggest that activity-dependent central sensitization can be elicited using conditioning electrical stimulation with a stimulation frequency that lies within the physiological firing range of primary afferents, and that it can be objectively assessed in humans using the NWR.

摘要

中枢敏化被认为是慢性疼痛病症的关键机制之一,已经开发了几种模型来描述人类中的这种现象。其中一种模型依赖于条件化电刺激,以引起对伤害感受系统的持久影响。本研究的目的是使用客观的电生理测量(伤害性撤回反射(NWR))来评估这些效应。在 13 名健康志愿者中评估了高频和低频条件化电刺激后的脊髓伤害感受的长期变化。在条件化区域(足部背侧)和周围环境中评估了机械刺激的感知强度评分和血流变化。为了评估伤害感受系统的兴奋性,在相同的神经支配区域(腓浅神经)内以分级刺激强度引出 NWR,并在腘绳肌中记录。低频刺激后,观察到 NWR 的强度独立的持久易化,反射幅度(平均增加 31+/-4%,p<0.001)和反射次数(平均增加 22+/-10%,p<0.01)均显著增加,血流增加(平均增加 40+/-10%,p<0.001)。这些发现表明,使用生理发放频率范围内的条件化电刺激可以引发与活动相关的中枢敏化,并且可以使用 NWR 对人类进行客观评估。

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