Shahaf Goded, Eytan Danny, Gal Asaf, Kermany Einat, Lyakhov Vladimir, Zrenner Christoph, Marom Shimon
Technion-Israel Institute of Technology, Haifa, Israel.
PLoS Comput Biol. 2008 Nov;4(11):e1000228. doi: 10.1371/journal.pcbi.1000228. Epub 2008 Nov 21.
The wide range of time scales involved in neural excitability and synaptic transmission might lead to ongoing change in the temporal structure of responses to recurring stimulus presentations on a trial-to-trial basis. This is probably the most severe biophysical constraint on putative time-based primitives of stimulus representation in neuronal networks. Here we show that in spontaneously developing large-scale random networks of cortical neurons in vitro the order in which neurons are recruited following each stimulus is a naturally emerging representation primitive that is invariant to significant temporal changes in spike times. With a relatively small number of randomly sampled neurons, the information about stimulus position is fully retrievable from the recruitment order. The effective connectivity that makes order-based representation invariant to time warping is characterized by the existence of stations through which activity is required to pass in order to propagate further into the network. This study uncovers a simple invariant in a noisy biological network in vitro; its applicability under in vivo constraints remains to be seen.
神经兴奋性和突触传递所涉及的时间尺度范围广泛,这可能导致在逐次试验中,对反复呈现的刺激的反应的时间结构不断变化。这可能是对神经元网络中假定的基于时间的刺激表征原语最严格的生物物理限制。在这里,我们表明,在体外自发发育的大规模随机皮质神经元网络中,每次刺激后神经元被招募的顺序是一种自然出现的表征原语,它对于尖峰时间的显著时间变化是不变的。通过相对少量的随机采样神经元,关于刺激位置的信息可以从招募顺序中完全检索出来。使基于顺序的表征对时间扭曲不变的有效连接性的特征是存在一些站点,活动必须通过这些站点才能进一步传播到网络中。这项研究在体外嘈杂的生物网络中发现了一个简单的不变量;其在体内限制条件下的适用性还有待观察。