Aksay Emre, Baker Robert, Seung H Sebastian, Tank David W
Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA.
J Neurosci. 2003 Nov 26;23(34):10852-8. doi: 10.1523/JNEUROSCI.23-34-10852.2003.
In the oculomotor system, temporal integration of velocity commands into position signals may depend on synaptic feedback among neurons of a bilateral brainstem cell assembly known as the "neural integrator." Both ipsilateral excitatory and contralateral inhibitory projections between eye position-related integrator cells are hypothesized as a substrate for positive feedback supporting integration. Presence of feedback interactions should be evident in cross-correlation functions of neuron pairs. Here, unilateral and bilateral paired recordings were obtained during fixation behavior from neurons in goldfish brainstem area I, a key element of the integrator. During fixations, discharge of most unilateral pairs, composed of cells with eye position sensitivities of the same sign, was positively correlated with lag of 0-10 msec (n = 11 of 14 significant). Typically, a very narrow peak (mean half-width <4 msec) near zero lag was observed. Discharge of bilateral pairs, composed of cells with position sensitivities of the opposite sign, was either negatively correlated with lag of 0-10 msec (n = 5 of 13 significant) or not correlated. Troughs in negative correlations always had minima between 3 and 5 msec lag. These results are consistent with the feedback hypothesis of temporal integration, highlighting excitation unilaterally and inhibition bilaterally. Absence of visual input did not weaken correlations, but other sources of correlated input extrinsic to area I were not ruled out. Triplet recordings revealed that unilateral pairwise correlations were primarily independent. Correlation between unilateral pairs systematically decreased with increasing eye position, demonstrating that synchrony is not necessary for persistent activity at high firing rates.
在动眼系统中,速度指令到位置信号的时间整合可能取决于一个被称为“神经整合器”的双侧脑干细胞集合中神经元之间的突触反馈。眼位相关整合器细胞之间同侧兴奋性和对侧抑制性投射均被假定为支持整合的正反馈底物。反馈相互作用的存在应在神经元对的互相关函数中表现明显。在此,在金鱼脑干I区(整合器的关键组成部分)的神经元进行注视行为期间获得了单侧和双侧配对记录。在注视期间,大多数单侧配对(由具有相同符号眼位敏感性的细胞组成)的放电与0 - 10毫秒的延迟呈正相关(14个中有11个显著)。通常,在零延迟附近观察到一个非常窄的峰值(平均半高宽<4毫秒)。由具有相反符号位置敏感性的细胞组成的双侧配对的放电,要么与0 - 10毫秒的延迟呈负相关(13个中有5个显著),要么不相关。负相关中的谷值总是在3至5毫秒延迟之间有最小值。这些结果与时间整合的反馈假设一致,突出了单侧兴奋和双侧抑制。视觉输入的缺失并未削弱相关性,但未排除I区外部其他相关输入源。三联记录显示单侧配对相关性主要是独立的。单侧配对之间的相关性随着眼位增加而系统地降低,表明在高放电率下持续活动并不需要同步。