Zampino Claudio, Ficacci Roberta, Checcacci Miriam, Franciolini Fabio, Catacuzzeno Luigi
Department of Chemistry, Biology and Biotechnology, The University of Perugia, Perugia, Italy.
Azienda Sanitaria Locale Roma 1, Rome, Italy.
Front Physiol. 2018 Aug 7;9:1037. doi: 10.3389/fphys.2018.01037. eCollection 2018.
The Gate Control Theory of pain, published more than half a century ago to explain nociceptive modulation of peripheral sensory input, assumes inhibition of incoming nociceptive (pain) information produced by mechanical stimulation. To verify the presence of such a gate control mechanism at the level of the human trigeminal system, we evaluated the effects on pain sensation of a proprioceptive trigeminal stimulation induced by mandibular extension. We found that such a stimulation, applied for 7 min, was effective in increasing both the threshold and tolerance of tooth pain induced by electrical activation of dental nociceptors. Moreover the antinociceptive effect lasted for several minutes after the proprioceptive stimulus had ceased. We also tested whether an exteroceptive palatal stimulation superimposed on the proprioceptive stimulation would increase the effects on tooth pain perception of human volunteers. We observed that the exteroceptive stimulation significantly increased the antinociceptive effect induced by the sole proprioceptive stimulation. The physiological mechanisms and the possible implications of these observations are discussed.
疼痛的闸门控制理论于半个多世纪前发表,旨在解释外周感觉输入的伤害性调制,该理论假定机械刺激会抑制传入的伤害性(疼痛)信息。为了验证人类三叉神经系统水平上是否存在这种闸门控制机制,我们评估了下颌伸展诱发的本体感觉三叉神经刺激对疼痛感觉的影响。我们发现,这种刺激持续7分钟,可有效提高由牙齿伤害感受器电激活诱发的牙痛阈值和耐受性。此外,在本体感觉刺激停止后,这种抗伤害感受作用仍持续数分钟。我们还测试了叠加在本体感觉刺激上的外感受性腭部刺激是否会增强对人类志愿者牙痛感知的影响。我们观察到,外感受性刺激显著增强了单纯本体感觉刺激诱发的抗伤害感受作用。本文讨论了这些观察结果的生理机制及其可能的意义。