Paik K S, Nam S C, Chung J M
Marine Biomedical Institute, University of Texas Medical Branch, Galveston 77550.
Exp Neurol. 1988 Feb;99(2):498-511. doi: 10.1016/0014-4886(88)90166-5.
The effect of conditioning stimulation of a peripheral nerve on responses of spinal neurons (dorsal horn cells and motoneurons) was studied in 16 decerebrate-spinal cats. The activity of dorsal horn cells was recorded with a microelectrode at the lumbosacral spinal cord and the single-unit activity of motoneurons was recorded from a filament of ventral rootlet divided from either the L7 or S1 ventral root. The responses of spinal neurons were evoked by noxious and innocuous mechanical stimuli and by noxious thermal stimuli applied to the receptive fields. The peripheral conditioning stimulation was applied to the tibial nerve with repetitive electrical pulses (2 Hz) at an intensity either suprathreshold for A delta or C fibers for 5 min. Applying conditioning stimulation to a peripheral nerve produced a powerful inhibition of the responses elicited by noxious stimuli, suggesting this inhibition is an antinociceptive effect. The inhibition produced by peripheral conditioning stimulation was differentially greater on the responses to noxious than to innocuous stimuli. Based on the results obtained from conditioning stimulation with graded strengths, afferent inputs from both myelinated and unmyelinated fibers seem to contribute to the production of the antinociceptive effect. The magnitude of the antinociceptive effect is bigger for the responses to noxious thermal than to mechanical stimuli. Furthermore, the reflex activity recorded in motor axons seemed to be more sensitive than in dorsal horn cells to the antinociceptive effect.
在16只去大脑脊髓猫中研究了外周神经的条件刺激对脊髓神经元(背角细胞和运动神经元)反应的影响。用微电极记录腰骶部脊髓背角细胞的活动,从L7或S1腹根分出的腹根细丝记录运动神经元的单单位活动。脊髓神经元的反应由施加于感受野的有害和无害机械刺激以及有害热刺激诱发。外周条件刺激通过重复电脉冲(2Hz)以对Aδ或C纤维阈上强度施加于胫神经5分钟。对外周神经施加条件刺激会对有害刺激引发的反应产生强烈抑制,表明这种抑制是一种抗伤害感受效应。外周条件刺激产生的抑制对有害刺激反应的影响比对无害刺激的影响更大。根据不同强度条件刺激获得的结果,有髓和无髓纤维的传入输入似乎都有助于产生抗伤害感受效应。对有害热刺激反应的抗伤害感受效应幅度比对机械刺激的更大。此外,运动轴突中记录的反射活动似乎比背角细胞对抗伤害感受效应更敏感。