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An intracellular study of somatosensory input to the optic tectum of the frog, Rana catesbeiana

机译:Rana Catesbeiana的青蛙视光图的躯体感应谱系的细胞内研究

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A few investigations have been reported about somatosensory projection to the optic tectum of the frog, but characteristics of tectal activity to somatic input are left unknown. In the present study, we investigated the neuronal activity evoked by sciatic nerve stimulation using intracellular recording tecllnique. Somatosensory neurons distributed between layer 1 and 6. Postsynaptic potentials (PSPs) include more IPSPs than EPSPs. The majority of the latencies of PSPs distributed from 5 to 30 ms. Some of somatosensory neurons responded to visual stimuli. Bimodal neurons in middle layers received inhibitory effect from sciatic nerve. According to the spatiotemporal distribution of visual responses, bimodal neurons in middle layers were determined to receive fast conducting component, named class R3 and/or R4 of retino-tectal afferents. From these results we concluded that somatic information from sciatic nerve mostly inhibits the visual response of tectal neurons especially concerning with avoidance behavior. It is also suggested that the tectal neurons in deeper layers constitute the neural circuit of somatosensory process, and a part of them receives inhibitory influence from visual input.
机译:据报道,对青蛙的视光图的躯体感应投影报告了一些调查,但细胞活性对体细胞输入的特征是未知的。在本研究中,我们研究了使用细胞内记录Tecllnique的坐骨神经刺激引起的神经元活动。分布在第1层和6层之间的躯体感觉神经元突触后潜在(PSP)包括比EPSP更多的IPSP。大多数PSP的延迟分布在5至30毫秒。一些躯体感觉神经元对视觉刺激作出反应。中间层中的双峰神经元接受了坐骨神经的抑制作用。根据视觉响应的时空分布,确定中层中的双峰神经元接收快速导电部件,名为R3和R3和/或R 4的Retino-Tectal传入的r4。从这些结果来看,我们得出结论,来自坐骨神经的体细胞信息大多抑制了细胞神经元的视觉响应,特别是在避免行为方面。还建议深层层中的细胞神经元构成躯体感应过程的神经电路,其中一部分从视觉输入接收抑制作用。

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