Soriano Jordi, Rodríguez Martínez María, Tlusty Tsvi, Moses Elisha
Department of Physics of Complex Systems, Weizmann Institute of Science, Rehovot 76100, Israel.
Proc Natl Acad Sci U S A. 2008 Sep 16;105(37):13758-63. doi: 10.1073/pnas.0707492105. Epub 2008 Sep 4.
We introduce an approach for the quantitative assessment of the connectivity in neuronal cultures, based on the statistical mechanics of percolation on a graph. This allows us to monitor the development of the culture and to see the emergence of connectivity in the network. The culture becomes fully connected at a time equivalent to the expected time of birth. The spontaneous bursting activity that characterizes cultures develops in parallel with the connectivity. The average number of inputs per neuron can be quantitatively determined in units of m(0), the number of activated inputs needed to excite the neuron. For m(0) approximately 15 we find that hippocampal neurons have on average approximately 60-120 inputs, whereas cortical neurons have approximately 75-150, depending on neuronal density. The ratio of excitatory to inhibitory neurons is determined by using the GABA(A) antagonist bicuculine. This ratio changes during development and reaches the final value at day 7-8, coinciding with the expected time of the GABA switch. For hippocampal cultures the inhibitory cells comprise approximately 30% of the neurons in the culture whereas for cortical cultures they are approximately 20%. Such detailed global information on the connectivity of networks in neuronal cultures is at present inaccessible by any electrophysiological or other technique.
我们介绍一种基于图上渗流统计力学对神经元培养物中的连通性进行定量评估的方法。这使我们能够监测培养物的发育情况,并观察网络中连通性的出现。培养物在相当于预期出生时间时变得完全连通。表征培养物的自发爆发活动与连通性并行发展。每个神经元的平均输入数量可以以m(0)为单位进行定量确定,m(0)是激发神经元所需的激活输入数量。对于m(0)约为15的情况,我们发现海马神经元平均约有60 - 120个输入,而皮质神经元约有75 - 150个输入,这取决于神经元密度。通过使用GABA(A)拮抗剂荷包牡丹碱来确定兴奋性神经元与抑制性神经元的比例。这个比例在发育过程中会发生变化,并在第7 - 8天达到最终值,这与预期的GABA转换时间一致。对于海马培养物,抑制性细胞约占培养物中神经元的30%,而对于皮质培养物,它们约占20%。目前,通过任何电生理或其他技术都无法获得有关神经元培养物中网络连通性的如此详细的全局信息。