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疼痛。一种中枢抑制平衡理论。

Pain. A central inhibitory balance theory.

作者信息

Kerr F W

出版信息

Mayo Clin Proc. 1975 Dec;50(12):685-90.

PMID:172744
Abstract

Knowledge of the segmental neuronal circuitry for noxious and non-noxious input is a necessary prelude to understanding pain mechanisms. Significant gaps in our understanding of the synaptology of these pathways in the dorsal horn have hindered progress in this area. This report describes the excitatory and inhibitory circuits that supply the marginal neurons of the spinal cord, whose role in nociceptive mechanisms is well established. On the basis of these data, it is proposed that large primary afferents (non-noxious) provide heavy inhibitory input to marginal neurons via gelatinosa cells. Conversely, small primary afferents (nociceptive) provide excitatory input to marginal neurons but relatively little inhibitory feedback to these cells via gelatinosa neurons. The modulation of pain-producing input depends thus on the balance between large-fiber and small-fiber activity via a postsynaptic inhibitory mechanism acting on the nociceptive relay neurons. This theory accounts satisfactorily for the modulation of pain by counterirritation and by various methods of stimulating large-fiber input.

摘要

了解伤害性和非伤害性输入的节段性神经元回路是理解疼痛机制的必要前奏。我们对背角这些通路的突触学理解存在重大差距,阻碍了该领域的进展。本报告描述了为脊髓边缘神经元提供输入的兴奋性和抑制性回路,其在伤害感受机制中的作用已得到充分证实。基于这些数据,有人提出,大型初级传入纤维(非伤害性)通过胶状质细胞向边缘神经元提供大量抑制性输入。相反,小型初级传入纤维(伤害性)向边缘神经元提供兴奋性输入,但通过胶状质神经元向这些细胞提供的抑制性反馈相对较少。因此,产生疼痛的输入的调制取决于通过作用于伤害性中继神经元的突触后抑制机制,大纤维和小纤维活动之间的平衡。该理论令人满意地解释了通过对抗刺激和各种刺激大纤维输入的方法对疼痛的调制。

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