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草蛙(林蛙)听觉中脑中与刺激相关的神经关联

Stimulus dependent neural correlations in the auditory midbrain of the grassfrog (Rana temporaria L.).

作者信息

Eggermont J J, Epping W J, Aertsen A M

出版信息

Biol Cybern. 1983;47(2):103-17. doi: 10.1007/BF00337084.

Abstract

Few-unit recordings were obtained using metal microelectrodes. Separation into single-unit spike trains was based on differences in spike amplitude and spike waveform. For that purpose a hardware microprocessor based spike waveform analyser was designed and built. Spikes are filtered by four matched filters and filter outputs at the moments of spike occurrence are read by a computer and used for off-line separation and spike waveform reconstruction. Thirty-one double unit recordings were obtained and correlation between the separated spike trains was determined. After stimulus correction correlation remained in only 8 of the double unit records. It appeared that in most cases this neural correlation was stimulus dependent. Continuous noise stimulation resulted in the strongest neural correlation remaining after correction for stimulus coupling, stimulation with 48 ms duration tonepips presented once per second generally did not result in a significant neural correlation after the correction procedure for stimulus lock. The usefulness of the additive model for neural correlation and the correction procedure based thereupon is discussed.

摘要

使用金属微电极进行少数单元记录。根据尖峰幅度和尖峰波形的差异将其分离为单个单元的尖峰序列。为此目的,设计并构建了基于硬件微处理器的尖峰波形分析仪。尖峰由四个匹配滤波器进行滤波,计算机在尖峰出现时刻读取滤波器输出,并用于离线分离和尖峰波形重建。获得了31个双单元记录,并确定了分离后的尖峰序列之间的相关性。经过刺激校正后,仅8个双单元记录中仍存在相关性。看来在大多数情况下,这种神经相关性是依赖于刺激的。连续噪声刺激导致在校正刺激耦合后仍存在最强的神经相关性,每秒呈现一次持续时间为48毫秒的音调脉冲刺激在进行刺激锁定校正程序后通常不会导致显著的神经相关性。讨论了加法模型用于神经相关性的实用性以及基于此的校正程序。

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