Systems Neurobiology Laboratory, The Salk Institute for Biological Studies, La Jolla, California 92037, USA.
J Neurosci. 2012 Nov 7;32(45):16040-50. doi: 10.1523/JNEUROSCI.0489-12.2012.
Many previous studies have demonstrated that changes in selective attention can alter the response magnitude of visual cortical neurons, but there has been little evidence for attention affecting response latency. Small latency differences, though hard to detect, can potentially be of functional importance, and may also give insight into the mechanisms of neuronal computation. We therefore reexamined the effect of attention on the response latency of both single units and the local field potential (LFP) in primate visual cortical area V4. We find that attention does produce small (1-2 ms) but significant reductions in the latency of both the spiking and LFP responses. Though attention, like contrast elevation, reduces response latencies, we find that the two have different effects on the magnitude of the LFP. Contrast elevations increase and attention decreases the magnitude of the initial deflection of the stimulus-evoked LFP. Both contrast elevation and attention increase the magnitude of the spiking response. We speculate that latencies may be reduced at higher contrast because stronger stimulus inputs drive neurons more rapidly to spiking threshold, while attention may reduce latencies by placing neurons in a more depolarized state closer to threshold before stimulus onset.
许多先前的研究已经表明,选择性注意的变化可以改变视觉皮层神经元的反应幅度,但很少有证据表明注意会影响反应潜伏期。尽管潜伏期的微小差异很难被察觉,但它们可能具有重要的功能意义,也可能为神经元计算的机制提供深入的了解。因此,我们重新研究了注意对灵长类动物视觉皮层 V4 区的单个单位和局部场电位 (LFP) 的反应潜伏期的影响。我们发现,注意确实会导致尖峰和 LFP 反应的潜伏期出现微小的(1-2 毫秒)但显著的缩短。尽管注意与对比度提升一样会降低反应潜伏期,但我们发现这两者对 LFP 的幅度有不同的影响。对比度提升会增加 LFP 诱发的初始偏移的幅度,而注意则会减小其幅度。对比度提升和注意都会增加尖峰反应的幅度。我们推测,在更高的对比度下,潜伏期可能会缩短,因为更强的刺激输入会更快地将神经元驱动到尖峰阈值,而注意可能会通过在刺激开始前使神经元处于更去极化的状态更接近阈值来缩短潜伏期。