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Receptive fields of second-order neurons in the olfactory bulb of the hamster.

机译:仓鼠嗅球中二阶神经元的感受野。

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Electrical stimulation of nerve fibers emerging from different positions of the olfactory epithelium was used to determine the receptive fields for 52 olfactory bulb neurons in the hamster. The responses of olfactory bulb neurons were recorded extracellularly with metal-filled micropipettes. Suprathreshold stimuli (500 microA) were applied to each of eight standard epithelial positions spaced approximately 250 microns apart, and the position, or positions, which, when stimulated, produced a response in the bulb were taken as an index of the neuron's receptive field. The results indicate that most bulb neurons have very localized receptive fields limited to only one or two stimulating positions. Furthermore, there was a statistically significant correlation between the location of a neuron's receptive field in the olfactory epithelium and the recording depth of the neuron in the olfactory bulb (Spearman rank correlation coefficient, rs, 0.67, P 0.001). These findings demonstrate that in the mammalian olfactory system there exists a topographical projection of input from localized regions in the epithelium onto the second-order neurons in the olfactory bulb.
机译:从嗅觉上皮的不同位置出现的神经纤维的电刺激被用来确定仓鼠中52个嗅球神经元的感受野。嗅球神经元的反应是用金属填充的微量移液器在细胞外记录的。将阈上刺激(500 microA)应用于相距约250微米的八个标准上皮位置中的每个位置,将被刺激时在球茎中产生响应的一个或多个位置视为神经元感受野的指标。结果表明,大多数球状神经元具有非常局限的接受区域,仅限于一个或两个刺激位置。此外,嗅觉上皮中神经元的感受野的位置与嗅球中神经元的记录深度之间存在统计学上的显着相关性(Spearman等级相关系数,rs,0.67,P <0.001)。这些发现表明,在哺乳动物的嗅觉系统中,存在从上皮的局部区域到嗅球中的二级神经元的输入的地形投影。

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