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新皮层神经元中尖峰时间的可靠性。

Reliability of spike timing in neocortical neurons.

作者信息

Mainen Z F, Sejnowski T J

机构信息

Howard Hughes Medical Institute, Salk Institute for Biological Studies, La Jolla, CA 92037, USA.

出版信息

Science. 1995 Jun 9;268(5216):1503-6. doi: 10.1126/science.7770778.

Abstract

It is not known whether the variability of neural activity in the cerebral cortex carries information or reflects noisy underlying mechanisms. In an examination of the reliability of spike generation using recordings from neurons in rat neocortical slices, the precision of spike timing was found to depend on stimulus transients. Constant stimuli led to imprecise spike trains, whereas stimuli with fluctuations resembling synaptic activity produced spike trains with timing reproducible to less than 1 millisecond. These data suggest a low intrinsic noise level in spike generation, which could allow cortical neurons to accurately transform synaptic input into spike sequences, supporting a possible role for spike timing in the processing of cortical information by the neocortex.

摘要

目前尚不清楚大脑皮层中神经活动的变异性是携带信息还是反映了潜在的噪声机制。在一项利用大鼠新皮层切片中神经元的记录来检测动作电位产生可靠性的研究中,发现动作电位时间的精确性取决于刺激瞬变。持续刺激会导致动作电位序列不精确,而具有类似于突触活动波动的刺激则会产生时间可重复性小于1毫秒的动作电位序列。这些数据表明动作电位产生过程中的内在噪声水平较低,这可能使皮层神经元能够将突触输入准确地转化为动作电位序列,支持了动作电位时间在新皮层处理皮层信息过程中可能发挥的作用。

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