Gruart A, Morcuende S, Martínez S, Delgado-García J M
Laboratorio Andaluz de Biología, Universidad Pablo de Olavide, 41013, Sevilla, Spain.
Neuroscience. 2000;100(4):719-30. doi: 10.1016/s0306-4522(00)00325-0.
The classical conditioning of the eyelid motor system in alert behaving rabbits has been used to study the expression of Fos in the hippocampus, and in the occipital, parietal, piriform and temporal cortices. Animals were classically conditioned with both delay and trace conditioning paradigms. As conditioned stimulus, both short and long (20 and 100 ms) tones (600 Hz, 90 dB) or short, weak (20 ms, 1kg/cm(2)) air puffs were used. The unconditioned stimulus was always a long, strong (100 ms, 3 kg/cm(2)) air puff that started 250-270 ms after the onset of the conditioned stimulus. The expression of Fos was significantly increased after both delayed and trace conditioning in the hippocampus, and in the parietal and piriform cortices contralateral to the unconditioned stimulus presentation side, compared with equivalent ipsilateral structures in conditioned animals, or with Fos production in the same contralateral structures in pseudo-conditioned and control animals. Fos expression in some cortical sites was specific to tone versus air puff stimuli when used as conditioned stimulus. Thus, Fos expression was significantly increased in the contralateral temporal lobe when tones were used as conditioned stimulus, for both delayed and trace conditioning paradigms, but not when animals were conditioned to short, weak air puffs. The present results indicate a specific Fos activation in several cerebral cortical structures during associative eyelid conditioning.
警觉行为家兔眼睑运动系统的经典条件反射已被用于研究海马体以及枕叶、顶叶、梨状叶和颞叶皮质中Fos的表达。动物采用延迟和痕迹条件反射范式进行经典条件反射。作为条件刺激,使用了短音和长音(20和100毫秒)(600赫兹,90分贝)或短而弱的(20毫秒,1千克/平方厘米)吹气。非条件刺激始终是一个长而强的(100毫秒,3千克/平方厘米)吹气,在条件刺激开始后250 - 270毫秒开始。与条件动物的同侧相应结构相比,或与假条件动物和对照动物同一对侧结构中的Fos产生相比,在延迟和痕迹条件反射后,海马体以及非条件刺激呈现侧对侧的顶叶和梨状叶皮质中Fos的表达显著增加。当用作条件刺激时,某些皮质部位的Fos表达对音调与吹气刺激具有特异性。因此,在延迟和痕迹条件反射范式中,当使用音调作为条件刺激时,对侧颞叶中的Fos表达显著增加,但当动物对短而弱的吹气进行条件反射时则不然。目前的结果表明,在联想性眼睑条件反射过程中,几个大脑皮质结构中存在特异性的Fos激活。