Schomburg E D, Steffens H, Marx B
Institute of Physiology, University of Göttingen, Germany.
Acta Physiol Pharmacol Bulg. 2001;26(3):193-6.
The contribution of nociceptive Adelta-fibres and C-fibres of the central pad of the foot to nociceptive spinal flexor reflex pathways (FRA-type) and to nociceptive excitatory reflex pathways to foot extensors (non-FRA type) was investigated in high spinal cats by blocking A-fibres completely by TTX; effects persisting after TTX were attributed to nociceptive C-fibres. The results revealed that both Adelta- and C-fibre afferents contributed to nociceptive reflexes of an FRA pattern and of a non-FRA pattern, the effects of Adelta-fibres being evoked with a distinctly shorter delay than those of C-fibres. Partly Adelta-fibres exerted a significant inhibitory influence on the C-fibre action in FRA pathways. A distinct part of the opioid action on nociceptive reflex pathways of the FRA-type and of the non-FRA-type was evidently exerted via C-fibres.
通过用河豚毒素(TTX)完全阻断A纤维,在高位脊髓猫中研究了足部中央垫的伤害性Aδ纤维和C纤维对伤害性脊髓屈肌反射通路(FRA型)以及对足部伸肌的伤害性兴奋性反射通路(非FRA型)的贡献;TTX作用后持续存在的效应归因于伤害性C纤维。结果显示,Aδ纤维和C纤维传入均对FRA模式和非FRA模式的伤害性反射有贡献,Aδ纤维引起的效应的延迟明显短于C纤维。在FRA通路中,部分Aδ纤维对C纤维的作用有显著抑制影响。阿片类药物对FRA型和非FRA型伤害性反射通路的明显作用显然是通过C纤维发挥的。