Yoshimura Yumiko, Callaway Edward M
Systems Neurobiology Laboratories, The Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, California 92037 USA.
Nat Neurosci. 2005 Nov;8(11):1552-9. doi: 10.1038/nn1565. Epub 2005 Oct 9.
Excitatory cortical neurons form fine-scale networks of precisely interconnected neurons. Here we tested whether inhibitory cortical neurons in rat visual cortex might also be connected with fine-scale specificity. Using paired intracellular recordings and cross-correlation analyses of photostimulation-evoked synaptic currents, we found that fast-spiking interneurons preferentially connected to neighboring pyramids that provided them with reciprocal excitation. Furthermore, they shared common fine-scale excitatory input with neighboring pyramidal neurons only when the two cells were reciprocally connected, and not when there was no connection or a one-way, inhibitory-to-excitatory connection. Adapting inhibitory neurons shared little or no common input with neighboring pyramids, regardless of their direct connectivity. We conclude that inhibitory connections and also excitatory connections to inhibitory neurons can both be precise on a fine scale. Furthermore, fine-scale specificity depends on the type of inhibitory neuron and on direct connectivity between neighboring pyramidal-inhibitory neuron pairs.
兴奋性皮层神经元形成了由精确互连的神经元组成的精细尺度网络。在此,我们测试了大鼠视觉皮层中的抑制性皮层神经元是否也可能以精细尺度特异性相互连接。通过使用配对细胞内记录以及对光刺激诱发的突触电流进行互相关分析,我们发现快速放电中间神经元优先连接到为它们提供相互兴奋的相邻锥体神经元。此外,只有当两个细胞相互连接时,它们才与相邻锥体神经元共享共同的精细尺度兴奋性输入,而在没有连接或存在单向抑制到兴奋连接时则不然。适应性抑制神经元与相邻锥体神经元几乎没有或没有共同输入,无论它们的直接连接性如何。我们得出结论,抑制性连接以及与抑制性神经元的兴奋性连接在精细尺度上都可以是精确的。此外,精细尺度特异性取决于抑制性神经元的类型以及相邻锥体 - 抑制性神经元对之间的直接连接性。