Ebner T J, Bloedel J R
Brain Res. 1984 Aug 20;309(1):182-6. doi: 10.1016/0006-8993(84)91027-8.
Recent work in our laboratory has demonstrated that spontaneous or evoked climbing fiber inputs are associated with an increased responsiveness of Purkinje cells to mossy fiber inputs activated by natural peripheral stimuli. These experiments were designed to test the hypothesis that this increased responsiveness occurs in the cerebellar cortex. In decerebrate, unanesthetized cats Purkinje cells in the surface folium were isolated and their simple and complex spikes discriminated. A bipolar concentric stimulating electrode was placed on the surface of the folium to activate the parallel fiber volley and modulate the Purkinje cell's simple spike discharge. The cell's simple spike discharge was evaluated when the surface stimulus was presented randomly and when this stimulus was timed to occur at a fixed interval after the spontaneous complex spike activity. When the surface stimulus was timed to occur at short intervals after the spontaneous complex spike, the response to the surface stimulus was accentuated. This increase in simple spike modulation occurred independent of whether the simple spike discharge increased or decreased in response to the surface stimulus. These results support the hypothesis that the climbing fiber input changes the gain of Purkinje cells' simple spike responses to mossy fiber inputs due to interactions occurring in the cerebellar cortex.
我们实验室最近的研究表明,自发或诱发的攀缘纤维输入与浦肯野细胞对由自然外周刺激激活的苔藓纤维输入的反应性增加有关。这些实验旨在检验这种反应性增加发生在小脑皮质的假说。在去大脑、未麻醉的猫中,分离出表面小叶中的浦肯野细胞,并区分它们的简单峰电位和复合峰电位。将双极同心刺激电极置于小叶表面,以激活平行纤维群放电并调节浦肯野细胞的简单峰电位放电。当随机呈现表面刺激时以及当该刺激被设定在自发复合峰电位活动后的固定间隔出现时,评估细胞的简单峰电位放电。当表面刺激被设定在自发复合峰电位后的短时间间隔出现时,对表面刺激的反应会增强。这种简单峰电位调制的增加与简单峰电位放电对表面刺激是增加还是减少无关。这些结果支持这样的假说,即由于在小脑皮质中发生的相互作用,攀缘纤维输入改变了浦肯野细胞对苔藓纤维输入的简单峰电位反应的增益。