Sakai N, Yamamoto T
Department of Behavioral Physiology, Faculty of Human Sciences, Osaka University, Suita, Japan.
Neurosci Res. 1999 Oct;35(1):53-61. doi: 10.1016/s0168-0102(99)00067-x.
When ingestion of a taste stimulus is paired with internal malaise, the animal remembers the taste and rejects its ingestion thereafter. This learning is referred to as conditioned taste aversion (CTA). To establish CTA in adult male Wistar rats, 0.1% saccharin and an i.p. injection of 0.15 M LiCl were used as the conditioned and unconditioned stimuli, respectively. Neuroanatomical study using the tracer method was performed to examine the ascending routes from the lateral part of the parabrachial nucleus (PBlat) which receives general visceral information and suggested the three possible routes to the amygdala: (1) direct route to the central nucleus of the amygdala (CeA); (2) diencephalic route to the basolateral nucleus of the amygdala (BLA) involving the zona incerta (ZI) and the midline and intralaminar thalamic complex (MITC); and (3) cortical route to the BLA involving insular cortex (IC). Rats with excitotoxic lesions of each of the CeA, ZI, MITC or IC had only a small or negligible effect on the acquisition of CTA. However, single lesions of the BLA and combined lesions of the ZI and IC, but not CeA and IC, almost completely abolished the acquisition of CTA. These results together with previous findings suggest that visceral (or unconditioned stimulus) information in the PBlat is sent to the BLA which is essential for the acquisition of CTA via the functionally important two parallel routes, the diencephalic and cortical routes, with either being able to create the aversion.
当味觉刺激的摄入与体内不适同时出现时,动物会记住这种味道并在之后拒绝摄入。这种学习被称为条件性味觉厌恶(CTA)。为了在成年雄性Wistar大鼠中建立CTA,分别使用0.1%的糖精和腹腔注射0.1五氯化锂作为条件刺激和非条件刺激。采用示踪法进行神经解剖学研究,以检查来自臂旁核外侧部(PBlat)的上行通路,该部位接收一般内脏信息,并提示了通往杏仁核的三种可能途径:(1)直接通往杏仁核中央核(CeA)的途径;(2)通过未定带(ZI)以及丘脑中线和板内核复合体(MITC)通往杏仁核基底外侧核(BLA)的间脑途径;(3)通过岛叶皮质(IC)通往BLA的皮质途径。对CeA、ZI、MITC或IC进行兴奋性毒性损伤的大鼠,对CTA的获得只有很小或可忽略不计的影响。然而,单独损伤BLA以及联合损伤ZI和IC(而非CeA和IC)几乎完全消除了CTA的获得。这些结果与先前的发现共同表明,PBlat中的内脏(或非条件刺激)信息通过功能上重要的两条平行途径——间脑途径和皮质途径——传递到BLA,这两条途径对于CTA的获得都是必不可少的,且任何一条途径都能够引发厌恶反应。