Department of Biology, Washington University in St. Louis, St. Louis, MO 63130-4899, USA.
J Neurophysiol. 2013 Jul;110(2):456-69. doi: 10.1152/jn.00145.2013. Epub 2013 Apr 24.
Many sensory brain regions are characterized by extensive local network interactions. However, we know relatively little about the contribution of this microcircuitry to sensory coding. Detailed analyses of neuronal microcircuitry are usually performed in vitro, whereas sensory processing is typically studied by recording from individual neurons in vivo. The electrosensory pathway of mormyrid fish provides a unique opportunity to link in vitro studies of synaptic physiology with in vivo studies of sensory processing. These fish communicate by actively varying the intervals between pulses of electricity. Within the midbrain posterior exterolateral nucleus (ELp), the temporal filtering of afferent spike trains establishes interval tuning by single neurons. We characterized pairwise neuronal connectivity among ELp neurons with dual whole cell recording in an in vitro whole brain preparation. We found a densely connected network in which single neurons influenced the responses of other neurons throughout the network. Similarly tuned neurons were more likely to share an excitatory synaptic connection than differently tuned neurons, and synaptic connections between similarly tuned neurons were stronger than connections between differently tuned neurons. We propose a general model for excitatory network interactions in which strong excitatory connections both reinforce and adjust tuning and weak excitatory connections make smaller modifications to tuning. The diversity of interval tuning observed among this population of neurons can be explained, in part, by each individual neuron receiving a different complement of local excitatory inputs.
许多感觉脑区的特征是广泛的局部网络相互作用。然而,我们对这种微电路结构对感觉编码的贡献知之甚少。神经元微电路的详细分析通常在体外进行,而感觉处理通常通过在体记录单个神经元来研究。电鳗鱼的电感觉通路提供了一个独特的机会,可以将突触生理学的体外研究与感觉处理的体内研究联系起来。这些鱼通过主动改变电脉冲之间的间隔来进行交流。在中脑后部外外侧核(ELp)中,传入的尖峰序列的时频滤波通过单个神经元建立了间隔调谐。我们在体外全脑准备中使用双全细胞膜片钳记录来描述 ELp 神经元之间的成对神经元连接。我们发现了一个密集连接的网络,其中单个神经元影响网络中其他神经元的反应。相似调谐的神经元比不同调谐的神经元更有可能共享兴奋性突触连接,并且相似调谐的神经元之间的突触连接比不同调谐的神经元之间的连接更强。我们提出了一个兴奋性网络相互作用的一般模型,其中强的兴奋性连接既增强又调整调谐,而弱的兴奋性连接对调谐进行较小的调整。在这个神经元群体中观察到的间隔调谐的多样性可以部分解释为每个神经元接收不同的局部兴奋性输入的补充。