Popov A E, Parsons D S, Levitt R A
Pharmacol Biochem Behav. 1983 Feb;18(2):171-8. doi: 10.1016/0091-3057(83)90359-3.
A shuttlebox paradigm was used to train rats to turn electrical stimulation ON and OFF by crossing back and forth in a stabilimeter cage. Two experiments are presented. In the first experiment a threshold current level was used in testing four electrode sites: the lateral hypothalamic area (LHA), lateral septal nucleus (LSN), periaqueductal grey (PAG), and the mesencephalic reticular formation (MRF). In the second experiment, a suprathreshold current level was used to explore two electrode sites: the PAG and the MRF. Stimulation with electrodes in the MRF produced an aversive behavioral response; animals shuttled mainly to turn electrical stimulation OFF. At the other electrode sites, both rewarding and aversive properties were apparent: animals shuttled to turn the stimulation ON as well as OFF. Systemic morphine (10 mg/kg) injections nonselectively increased both average ON and OFF times for the three rewarding sites (minimum p less than 0.05) at the threshold current level. Systemic morphine injections (10 mg/kg) in animals stimulated at a suprathreshold current level in the PAG selectively increased time spent with stimulation ON (p less than 0.05) as opposed to time spent with stimulation OFF. No significant behavioral change due to morphine was seen in the aversive MRF at either current level. Animal behavior also was found to vary as a function of site of stimulation (p less than 0.05). The use of suprathreshold currents appears necessary to produce selective reward facilitation effects of morphine such as those found in the PAG or LHA.
采用穿梭箱范式训练大鼠在稳定计笼中来回穿梭以开启和关闭电刺激。呈现了两个实验。在第一个实验中,使用阈值电流水平测试四个电极部位:外侧下丘脑区(LHA)、外侧隔核(LSN)、导水管周围灰质(PAG)和中脑网状结构(MRF)。在第二个实验中,使用阈上电流水平探索两个电极部位:PAG和MRF。用位于MRF的电极进行刺激会产生厌恶行为反应;动物主要通过穿梭来关闭电刺激。在其他电极部位,奖赏和厌恶特性均很明显:动物穿梭以开启和关闭刺激。在阈值电流水平下,全身性注射吗啡(10毫克/千克)非选择性地增加了三个奖赏部位的平均开启和关闭时间(最小p值小于0.05)。在PAG以阈上电流水平进行刺激的动物中,全身性注射吗啡(10毫克/千克)选择性地增加了刺激开启时所花费的时间(p值小于0.05),与刺激关闭时所花费的时间相反。在任一电流水平下,在产生厌恶反应的MRF中均未观察到吗啡引起的显著行为变化。还发现动物行为会因刺激部位而异(p值小于0.05)。似乎需要使用阈上电流来产生吗啡的选择性奖赏促进作用,如在PAG或LHA中所发现的那样。