Luna Rogelio, Hernández Adrián, Brody Carlos D, Romo Ranulfo
Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, 04510 México, DF, México.
Nat Neurosci. 2005 Sep;8(9):1210-9. doi: 10.1038/nn1513. Epub 2005 Jul 31.
We sought to determine the neural code(s) for frequency discrimination of vibrotactile stimuli. We tested five possible candidate codes by analyzing the responses of single neurons recorded in primary somatosensory cortex of trained monkeys while they discriminated between two consecutive vibrotactile stimuli. Differences in the frequency of two stimuli could be discriminated using information from (i) time intervals between spikes, (ii) average spiking rate during each stimulus, (iii) absolute number of spikes elicited by each stimulus, (iv) average rate of bursts of spikes or (v) absolute number of spike bursts elicited by each stimulus. However, only a spike count code, in which spikes are integrated over a time window that has most of its mass in the first 250 ms of each stimulus period, covaried with behavior on a trial-by-trial basis, was consistent with psychophysical biases induced by manipulation of stimulus duration, and produced neurometric discrimination thresholds similar to behavioral psychophysical thresholds.
我们试图确定用于振动触觉刺激频率辨别的神经编码。我们通过分析训练有素的猴子初级体感皮层中记录的单个神经元的反应,测试了五种可能的候选编码,同时它们要区分两个连续的振动触觉刺激。可以使用以下信息来区分两种刺激的频率差异:(i) 峰电位之间的时间间隔;(ii) 每个刺激期间的平均放电率;(iii) 每个刺激引发的峰电位绝对数量;(iv) 峰电位爆发的平均速率;或 (v) 每个刺激引发的峰电位爆发绝对数量。然而,只有一种峰电位计数编码,即峰电位在一个时间窗口内进行整合,该时间窗口的大部分权重位于每个刺激期的前250毫秒内,在逐次试验的基础上与行为相关,与通过操纵刺激持续时间诱导的心理物理学偏差一致,并产生与行为心理物理学阈值相似的神经测量辨别阈值。