Barone F C, Wayner M J, Tsai W H, Zarco de Coronado I
Brain Res Bull. 1981 Aug;7(2):195-207. doi: 10.1016/0361-9230(81)90084-8.
The effects of ipsilateral mesencephalic periaqueductal gray (PAG) stimulation on lateral hypothalamic (LH), lateral preoptic area (LPA), and ventral and subthalamic activity were determined in anesthetized rats. Recordings from 119 diencephalic neurons indicate that the PAG provides a predominantly inhibitory input to diencephalic neurons. Excitatory input occurred infrequently in the hypothalamus and was not observed in the thalamus. Following single rectangular pulse stimulation, 0.5 msec, 0-500 micro A, short latency decreases in activity occurred. Longer latency increases in discharge frequency were also observed. Dose response relations were established for 74% of the LH neurons, 68% of the LPA neurons, and for 72% of the ventral and subthalamic neurons following VTA stimulation. Decreases and, in a few hypothalamic neurons, increases in activity seemed to involve only one or two synapses. The effects of contralateral PAG stimulation on LPA-LH neuronal activity were alos determined. Dose response relations were established for 66% of the LPA-LH neurons following contralateral stimulation. However, results were different in that many more cells were increased with a shorter latency and at a lower threshold following contralateral stimulation. Antidromic responses verified PAG and diencephalic interconnections and revealed relatively slow conduction velocities, less than 1.0 m/sec. Results were discussed in terms of the anatomy of known PAG pathways, PAG neuronal activation vs. PAG fibers of passage, and the functions of midbrain-hypothalamic interconnections in the integration of somatic, visceral and nociceptive sensory inputs.
在麻醉大鼠中,确定了同侧中脑导水管周围灰质(PAG)刺激对下丘脑外侧(LH)、视前外侧区(LPA)以及腹侧和丘脑底活动的影响。对119个间脑神经元的记录表明,PAG对间脑神经元主要提供抑制性输入。兴奋输入在下丘脑很少发生,在丘脑中未观察到。在单次矩形脉冲刺激(0.5毫秒,0 - 500微安)后,出现了活动的短潜伏期下降。也观察到了放电频率的较长潜伏期增加。在腹侧被盖区(VTA)刺激后,为74%的LH神经元、68%的LPA神经元以及72%的腹侧和丘脑底神经元建立了剂量反应关系。活动的下降以及少数下丘脑神经元活动的增加似乎仅涉及一两个突触。还确定了对侧PAG刺激对LPA - LH神经元活动的影响。在对侧刺激后,为66%的LPA - LH神经元建立了剂量反应关系。然而,结果有所不同,因为在对侧刺激后,更多细胞在更短潜伏期和更低阈值时活动增加。逆向反应证实了PAG与间脑的相互连接,并揭示了相对较慢的传导速度,小于1.0米/秒。根据已知PAG通路的解剖结构、PAG神经元激活与PAG通过纤维、以及中脑 - 下丘脑相互连接在躯体、内脏和伤害性感觉输入整合中的功能对结果进行了讨论。