Sinha R, Sharma R, Mathur R, Nayar U
Department of Physiology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi.
Indian J Physiol Pharmacol. 1999 Jul;43(3):323-31.
The hypothalamo-limbic system has been implicated in recognizing the affective significance of pain and elicitation of related emotional responses. Several evidences from different studies support a role of these areas in endogenous analgesic mechanisms for pain modulation as elucidated by different pain tests in more than one animal model. In the above context, the aim of this study was to investigate the relative effectiveness of the pain modulatory action of hypothalamic and limbic structures in rat using similar stimulation parameters, and studying the effect on tooth pulp stimulation evoked jaw opening reflex (TP-JOR). To achieve the objective, unilateral stimulation of hypothalamic (lateral = LH; ventromedial = VMN; anterior = AH) and limbic areas (amygdala = AMYG; hippocampus = HIPP) was done on the TP-JOR test. A significant reduction in the amplitude of EMG recorded from the digastric muscle (dEMG) as a result of tooth-pulp stimulation was observed on stimulation of LH, VMN, AMYG and HIPP but not from AH. Also, the magnitude of this effect was almost similar from these areas. The results suggest that these areas (except AH) have an antinociceptive role in tooth-pulp stimulation evoked pain response.
下丘脑 - 边缘系统与识别疼痛的情感意义以及引发相关情绪反应有关。来自不同研究的多项证据支持这些区域在多种动物模型中通过不同疼痛测试所阐明的内源性镇痛机制中发挥作用,以调节疼痛。在此背景下,本研究的目的是使用相似的刺激参数,研究大鼠下丘脑和边缘结构的疼痛调节作用的相对有效性,并研究对牙髓刺激诱发的下颌张开反射(TP-JOR)的影响。为实现这一目标,在TP-JOR测试中对下丘脑(外侧 = LH;腹内侧 = VMN;前部 = AH)和边缘区域(杏仁核 = AMYG;海马体 = HIPP)进行单侧刺激。在刺激LH、VMN、AMYG和HIPP时,观察到由于牙髓刺激导致的二腹肌肌电图(dEMG)振幅显著降低,但刺激AH时未观察到这种情况。此外,这些区域的这种效应大小几乎相似。结果表明,这些区域(除AH外)在牙髓刺激诱发的疼痛反应中具有抗伤害感受作用。