Gil Z, Amitai Y
Department of Physiology, Zlotowski Center for Neuroscience, Faculty of Health Sciences, Ben-Gurion University, Beer-Sheva, Israel.
J Neurosci. 1996 Oct 15;16(20):6567-78. doi: 10.1523/JNEUROSCI.16-20-06567.1996.
We explored differences in the properties of convergent afferent inputs to single neurons in the barrel area of the neocortex. Thalamocortical slices were prepared from mature mice. Recordings were made from neurons in layer V, and either thalamocortical afferents or horizontal intracortical axons were stimulated. Monosynaptic EPSPs from both sources had latencies shorter than 1.8 msec and low shape variance. Disynaptic thalamocortical IPSPs had latencies longer than 1.8 msec. All neuronal types, as defined by intrinsic firing patterns, received both thalamocortical and intracortical monosynaptic input. The shape parameters (rate of rise and half-width) of monosynaptic EPSPs from the two inputs did not differ significantly. The rate of rise of EPSPs varied considerably across cells, but the rates of rise of thalamocortical and intracortical EPSPs onto single cells were strongly correlated. The relative thresholds for activation of synaptic excitation and inhibition were strikingly different between the two tracts: thalamocortical stimulation induced GABAA-dependent IPSPs at stimulus intensities equal to or less than those required for evoking EPSPs in 35% (24 of 68) of the cells. In contrast, the threshold response to intracortical stimulation was always an EPSP, and only stronger stimuli could generate di- or polysynaptic IPSPs. We suggest that postsynaptic factors may tend to equalize the waveforms of EPSPs from thalamocortical and intracortical synapses onto single neurons. A major difference between the two convergent tracts is that the thalamocortical pathway much more effectively activates feedforward inhibitory circuits than does the horizontal intracortical pathway.
我们探究了新皮层桶状区单个神经元的汇聚传入输入特性的差异。从成年小鼠制备丘脑皮质切片。在V层神经元进行记录,并刺激丘脑皮质传入纤维或水平皮质内轴突。来自这两个来源的单突触兴奋性突触后电位(EPSP)潜伏期均短于1.8毫秒,且波形变化小。双突触丘脑皮质抑制性突触后电位(IPSP)潜伏期长于1.8毫秒。根据内在放电模式定义的所有神经元类型均接受丘脑皮质和皮质内单突触输入。来自这两种输入的单突触EPSP的形状参数(上升速率和半高宽)无显著差异。EPSP的上升速率在不同细胞间差异很大,但丘脑皮质和皮质内EPSP在单个细胞上的上升速率高度相关。两条传导通路之间突触兴奋和抑制的激活相对阈值显著不同:在68个细胞中的35%(24个)中,丘脑皮质刺激在等于或低于诱发EPSP所需强度的刺激强度下诱导出GABAA依赖性IPSP。相比之下,对皮质内刺激的阈值反应始终是EPSP,只有更强的刺激才能产生双突触或多突触IPSP。我们认为,突触后因素可能倾向于使丘脑皮质和皮质内突触到单个神经元的EPSP波形趋于均衡。这两条汇聚传导通路的一个主要差异在于,丘脑皮质通路比水平皮质内通路更有效地激活前馈抑制回路。